Taha Elwi | Communication | Best Scholar Award

Prof. Dr. Taha Elwi | Communication | Best Scholar Award

Professor at Al-Nahrain University, Iraq

Dr. Taha A. Elwi is a senior researcher, educator, and scientific consultant with over 20 years of experience spanning wireless communications, applied electromagnetics, and artificial intelligence. He holds a Ph.D. in Systems Engineering from the University of Arkansas at Little Rock, where he specialized in nanoscale and metamaterial antenna design. Currently serving as Head of the International Applied and Theoretical Research Center (IATRC) in Baghdad, Dr. Elwi has previously held academic and advisory roles across the U.S., Malaysia, and Iraq. His research includes wearable antennas, RIS, nanostructures, biomedical sensors, and AI-driven signal processing, with over 150 peer-reviewed publications and 10 patents. Recognized in Stanford University’s Top 2% Scientists list (2022), he has also received numerous national and international awards for research excellence. A committed mentor and collaborator, Dr. Elwi continues to lead interdisciplinary projects that bridge academia, industry, and innovation policy in Iraq and beyond.

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๐Ÿ† Summary of Suitability: Prof. Dr. Taha Elwi Nomination for the Research for Best Scholar Award

Prof. Dr. Taha Elwi stands as a transformative figure in interdisciplinary research, integrating wireless communications, applied electromagnetics, and artificial intelligence. With over 20 years of impactful academic, industrial, and policy-level engagement, he is exceptionally qualified for the Research for Best Scholar Award.

๐ŸŽ“ Educational Background

  • ๐Ÿง  Ph.D. in Systems Engineering (2011)
    University of Arkansas at Little Rock, USA
    โžค Dissertation: Novel Antennas based on Innovations in Nanoscale and Metamaterial Structures
    โžค GPA: 4.0

  • ๐Ÿ“˜ M.S. in Applied Science (2011)
    University of Arkansas at Little Rock, USA
    โžค Focus: Systems Engineering and Science
    โžค GPA: 4.0

  • ๐Ÿ“— M.Sc. in Electrical Engineering โ€“ Laser & Optoelectronics (2006)
    Al-Nahrain University, Baghdad, Iraq
    โžค Thesis: Design of Electron Gun for Free Electron Laser System
    โžค GPA: 4.0

  • ๐Ÿ“• B.Sc. in Electrical Engineering โ€“ Laser & Optoelectronics (2003)
    Al-Nahrain University, Baghdad, Iraq
    โžค Project: Ray Tracing Analysis in Optical Systems
    โžค GPA: 4.0

๐Ÿ’ผ Academic & Professional Experience

  • ๐Ÿ‘จโ€๐Ÿซ Head, Automation & AI Engineering Dept., Al-Nahrain University (2024โ€“Present)

  • ๐Ÿงช R&D Officer, Ministry of Higher Education and Scientific Research (2022โ€“2024)

  • ๐Ÿ›ฐ๏ธ Head, Communication Engineering Dept., Al-Mamoon Univ. College (2016โ€“2023)

  • ๐Ÿ“ก Visiting Professor, New York Institute of Technology (2015)

  • ๐Ÿ”ฌ Research Fellow, Universiti Putra Malaysia (2013โ€“2014)

  • ๐Ÿง‘โ€๐Ÿซ Lecturer, University of Baghdad & Al-Mamoon Univ. (2011โ€“2013)

  • ๐Ÿ“ถ Honorary Research Associate, UALR, USA (2011โ€“2012)

  • ๐Ÿ“˜ PhD & MS Research Assistant, UALR, USA (2008โ€“2011)

  • ๐Ÿง‘โ€๐Ÿซ Graduate Teaching Assistant, Al-Nahrain University (2003โ€“2006)

๐Ÿข Industry & Development Roles

  • ๐Ÿ“ก Project Manager, Darin Co. for Korek Telecom (2012โ€“2013)

  • โš™๏ธ General Manager, Al-Makased Co. (Electric tower installation)

  • ๐Ÿ’ป Computer & Networking Engineer, EZ Computers, USA (2009โ€“2011)

  • ๐ŸŒ BSS Engineer, Huawei & ZTE, Iraq & China (2005โ€“2007)
    โžค Led GSM/CDMA deployment, conducted training, signed telecom agreements.

๐Ÿ“š Research Interests

  • ๐Ÿฉป Biomedical antennas, wearable/implantable tech

  • ๐Ÿ“ถ Smart antennas, RIS, nanoantennas, metamaterials

  • ๐Ÿงฌ AI-based signal & image processing, diagnostics

  • ๐Ÿš— V2X, cognitive radio, GPS degradation studies

  • ๐Ÿ” Electromagnetic scattering, laser systems, microwave & optical sensors

๐Ÿง  Software & Simulation Expertise

  • ๐Ÿงฎ MATLAB, CST, HFSS, FEKO, ANSYS, ADS, ZEMAX

  • ๐ŸŒ Lumerical, Accelrys, EMPIRE, IE3D

  • ๐Ÿ”ฌ Advanced instrumentation: AFM, Raman, UV, cleanroom protocols

๐Ÿ† Honors & Awards

  • ๐Ÿฅ‡ Top 2% Scientists Worldwide, Stanford University (2022)

  • ๐Ÿ… INSO Award (2022) โ€“ Intโ€™l Excellence in Engineering & Medicine

  • ๐Ÿ… VDGOOD Best Researcher Award, Intโ€™l Scientist Awards (2021)

  • ๐ŸŽ–๏ธ Distinction Award, Scientific Achievement (2011)

  • โญ Harambee Awards (2009 & 2010) โ€“ Highest GPA

  • ๐Ÿงช Candidacy Exam Honors, UALR (2009)

  • ๐Ÿ›ฐ๏ธ Year Star Award, Huawei Technologies (2007)

  • ๐ŸŽ“ Graduated with Highest Honors, B.Sc. & M.Sc.

๐Ÿงพ Reviewer & Memberships

  • ๐Ÿ“– Reviewer for:
    โžค Progress in Electromagnetics Research (PIER)
    โžค Journal of Electromagnetic Waves & Applications
    โžค Computer Communication & Collaboration Journal

  • ๐ŸŒ IEEE Member

  • ๐Ÿงฌ Member, Congress of Nano-S&T

๐ŸŒ Community Engagement

  • ๐ŸŽ“ Organizer of graduation festivals and student events

  • ๐Ÿ›๏ธ Contributor to education policy & research infrastructure in Iraq

  • ๐Ÿ‘จโ€๐Ÿ‘ฉโ€๐Ÿ‘ง Organizer of parentsโ€™ and youth development initiatives

  • ๐Ÿ—ณ๏ธ Supporter of Iraq’s Electoral Commission reform

๐Ÿ“šTop Notedย  Publications

Novel miniaturized folded UWB microstrip antenna-based metamaterial for RF energy harvesting

Cited : 78

Novel UWB Printed Metamaterial Microstrip Antenna based Organic Substrates for RF-Energy Harvesting Applications

Cited : 78

Multi-walled carbon nanotube-based RF antennas

Cited : 74

A Cylindrical Wideband Slotted Patch Antenna Loaded with Frequency Selective Surface for MRI Applications

Cited : 71

A Miniaturized Folded Antenna Array for MIMO Applications

Cited : 69

Conclusion

Prof. Dr. Taha Elwi is a visionary scholar, engineer, and scientific leader whose prolific contributions have significantly shaped the fields of electromagnetics, AI, and wireless systems. His relentless commitment to innovation, mentorship, and global collaboration positions him as an ideal and outstanding candidate for the Research for Best Scholar Award.

Dandan Zhang | Composite Materials | Best Researcher Award

Assoc. Prof. Dr. Dandan Zhang | Composite Materials | Best Researcher Award

Associate Professor at Huazhong University of Science and Technology, Chinaย 

Assoc. Prof. Dr. Dandan Zhang is an Associate Professor at the School of Electrical and Electronic Engineering, Huazhong University of Science and Technology (HUST), China. His earned Ph.D. from HUST in 2007, following an M.Sc. from the Hubei Institute of Technology and a B.Sc. from the Huazhong Institute of Technology. With over three decades of academic experience, Dr. Zhang specializes in high-voltage engineering, cable diagnostics, and impedance spectroscopy. His research contributions include leading major industry-academia projects and publishing extensively in top IEEE journals. His received prestigious awards, including the Hainan Provincial Science and Technology Progress Award and the State Grid Shaanxi Electric Power Co. First Prize. Dr. Zhang holds multiple national patents and continues to play a key role in transformer stability, fault diagnostics, and cable system innovation.

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๐Ÿ† Summary of Suitability: Assoc. Prof. Dr. Dandan Zhang For the Research for Best Researcher Award

Assoc. Prof. Dr. Dandan Zhang is a highly deserving candidate for the Research for Best Researcher Award, with an exceptional academic and industrial track record that spans over three decades in the field of electrical and electronic engineering. His contributions have significantly advanced diagnostic technologies in power systems, high-voltage equipment reliability, and electromagnetic fault analysis.

๐ŸŽ“ Educational Background

  • ๐Ÿง  Ph.D. in Electrical and Electronic Engineering
    Huazhong University of Science and Technology (HUST)
    (Sep 2003 โ€“ Jun 2007)

  • ๐Ÿ“˜ M.Sc. in Electrical and Computer Science
    Hubei Institute of Technology
    (Sep 1988 โ€“ Jun 1991)

  • ๐Ÿ“— B.Sc. in Electric Power Engineering
    Huazhong Institute of Technology
    (Sep 1984 โ€“ Jun 1988)

๐Ÿ’ผ Professional Experience

  • ๐Ÿ‘จโ€๐Ÿซ Associate Professor, School of Electrical and Electronic Engineering, HUST
    (Jul 2003 โ€“ Present)

  • ๐Ÿ“˜ Lecturer, HUST
    (Jul 1993 โ€“ Jun 2003)

  • ๐Ÿ› ๏ธ Earlier Role (unspecified), Huazhong Institute of Technology
    (Sep 1991 โ€“ Jun 1993)

๐Ÿงช Major Research Projects (Last 5 Years)

๐Ÿ›๏ธ National Natural Science Foundation of China (NSFC)

  • ๐Ÿ”ฌ Repeated Short-Circuit Impulse Impact on Transformer Stability
    (2022โ€“2025 | ยฅ2.6M | Co-investigator)

๐Ÿ”— Industry-Academia Collaborations

  • โšก DC Quantum Power Standards
    (2021โ€“2023 | ยฅ2.58M | PI)

  • ๐ŸŒฑ Carbon Emission Analysis of Power Equipment
    (2022 | ยฅ797K | PI)

  • ๐Ÿงฏ Fracture Mechanism of Composite Insulators
    (2020โ€“2022 | ยฅ900K | PI)

  • โšก Lightning Data Analysis & Forecasting
    (2020โ€“2022 | ยฅ1.26M | PI)

  • ๐Ÿ”Œ Online Warning OLTC Technology
    (2020โ€“2021 | ยฅ300K | PI)

  • ๐Ÿ’ก Josephson Junction Array Drive Technology
    (2021 | ยฅ910K | PI)

  • ๐Ÿงช Live Detection Instruments Suitability
    (2019โ€“2020 | ยฅ253K | PI)

  • ๐ŸŒฌ๏ธ Aerodynamic Testing of Iced Conductors
    (2019โ€“2020 | ยฅ361K | PI)

  • ๐Ÿ—ผ Simulation of Drilling-Spanning Towers
    (2019โ€“2020 | ยฅ300K | PI)

  • ๐Ÿ” OLTC Vibration-Based Fault Diagnosis
    (2019 | ยฅ717.8K | PI)

๐Ÿ† Awards & Honors

  • ๐Ÿฅ‡ 1st Prize โ€“ Science & Technology Progress Award
    Hainan Provincial Government (2016)
    โžค Project: Lightning Disaster Reduction in Hainan Grid
    โžค Rank: 8/10

  • ๐Ÿ… Hainan Provincial Patent Gold Award (2019)
    โžค Patent: Tower Striking Rate Determination Method
    โžค Rank: 2/8

  • ๐Ÿฅ‡ 1st Prize โ€“ Science & Technology Progress Award
    State Grid Shaanxi Electric Power Co. (2019)
    โžค Sole Awardee โ€“ Cable Fault Location via Impedance Spectroscopy

๐Ÿงพ Representative Patents

  • ๐Ÿงช System for Collecting Gaseous Degradation Products (2021)

  • ๐Ÿ” Conductive Material Identification via Frequency Characteristics (2016)

  • ๐ŸŒก๏ธ Winding Detection Based on Thermocouple Principles (2015)

  • โšก Cable Fault Location via Spectral Periodicity (2021)

  • ๐Ÿ”ง Cable Operation State Diagnosis System (2018)

  • ๐Ÿ› ๏ธ Local Cable Defect Diagnosis Method (2016)

  • ๐Ÿ“ก Dielectric Dispersion-Based EM Wave Detection (2014)

๐Ÿ“šTop Notedย  Publications

An Investigation into the Products of Thermally Aged Composite Insulator Core Rods

Study on Gas Production Characteristics of Thermally Aged Composite Insulator Core Rods Under Vacuum Conditions

Extraction of High-Frequency Power Cable Transmission Characteristics From Impedance Spectroscopy

Mechanical Fault Diagnostics of Power Transformer On-Load Tap Changers Using Dynamic Time Warping

Conclusion

Dr. Dandan Zhangโ€™s outstanding contributions in both fundamental research and real-world applications, especially in high-voltage diagnostics, fault analysis, and grid infrastructure modernization, make him a leading authority and an ideal recipient of the Research for Best Researcher Award. His work bridges academic excellence with industrial relevance, demonstrating innovation, leadership, and impact.

Se-Yun Kim | energy materials | Best Researcher Award

Assist. Prof. Dr. Se-Yun Kim | energy materials | Best Researcher Awardย 

Assistant Professor, at Kyungnam university, South Korea.

Seโ€‘Yun Kim (๊น€์„ธ์œค/้‡‘ไธ–ๅ…), born on Mayโ€ฏ15,โ€ฏ1985, is a leading researcher and educator in advanced electronic materials and solar energy technologies. Born and raised in South Korea, he earned all his degreesโ€”from B.S. to Ph.D.โ€”in Electronic Materials at Kyungpook National University (2004โ€“2015). Following his doctorate, Kim pursued postdoctoral research at DGIST and Kyungpook National University, focusing on thin-film solar cell technologies. In 2017, he joined DGISTโ€™s Thin Film Solar Cell Research Center as a researcher, before taking up an assistant professorship at Kyungnam University in 2020. With growing leadership responsibilities including department chair and director roles in multiple research centers since 2023, Kim integrates teaching, administrative leadership, and cutting-edge scientific innovation. His expertise centers on optimizing material interfaces and phase compositions to improve photovoltaic device efficiency. He has been recognized repeatedly for notable presentations and publications at international conferences and national scientific societies, reflecting his prominence in the field of electronic materials engineering.

Professional Profile

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๐ŸŽ“ Educationย 

Seโ€‘Yun Kim completed his higher education entirely at Kyungpook National University. He earned his Bachelor of Science in Inorganic Materials Engineering, specializing in Electronic Materials, in Februaryโ€ฏ2009 after a five-year undergraduate program (2004โ€“2009). He immediately continued at the same institution for graduate studies, pursuing a Master of Science in Electronic Materials from Marchโ€ฏ2009 to Februaryโ€ฏ2011. His research during the masterโ€™s program involved material synthesis and characterization aimed at improving electronic properties. Following this, Kim embarked on Ph.D. studies in Electronic Materials, also at Kyungpook National University, from Marchโ€ฏ2011 until Februaryโ€ฏ2015. His doctoral research focused on tailoring material properties for applications in thin-film photovoltaics, culminating in a dissertation that investigated material phase behavior and energy band engineering. This solid foundation in materials science and electronics enabled Kim to transition seamlessly to advanced solarโ€cell and optoelectronic research, equipping him with both theoretical knowledge and practical laboratory expertise that underpins his subsequent career in academia and research.

๐Ÿ’ผ Professional Experienceย 

After earning his Ph.D. in 2015, Seโ€‘Yun Kim embarked on a postdoctoral fellowship at the Daeguโ€‘Gyeongbuk Institute of Science and Technology (DGIST), within the Department of Energy Research (Febโ€ฏ2015โ€“Febโ€ฏ2016). He continued his postdoctoral career at Kyungpook National University from Mayโ€ฏ2016 to Octโ€ฏ2017, deepening his expertise in photovoltaic material science. In Octโ€ฏ2017, he returned to DGIST as a Researcher at the Thin Film Solar Cell Research Center, contributing to advanced thin-film device fabrication and performance optimization until Augโ€ฏ2020. In Septโ€ฏ2020, Kim joined Kyungnam University as an Assistant Professor in the Department of Materials Science and Engineering. His tenure at Kyungnam has been marked by leadership since Marโ€ฏ2023: he serves concurrently as Department Chair, Director of the Smart Manufacturing ICC (WISE LINC 3.0), Director of the Center for Metal Additive Manufacturing, and Director of the Institute of Materials Research. In these capacities, Kim balances research, administration, and teaching, overseeing interdisciplinary teams and directing strategic initiatives in materials technologies.

๐Ÿ”ฌ Research Interestsย 

Seโ€‘Yun Kimโ€™s research interests lie at the intersection of electronic materials engineering and renewable energy, with a specific focus on thin-film photovoltaic technologies, perovskite materials, and advanced semiconductor systems. His work delves into phase dynamics during layer growth, liquid-phase-assisted grain development, interface chemistry, and photoluminescence engineering. Key areas include the investigation of CZTSSe-based thin films with liquid-mediated grain growth to optimize film morphology and solar cell efficiency; mixed-halide perovskites, utilizing ternary phase diagrams to tailor optical bandgaps and emission properties; and Mo-back contact optimization to mitigate secondary phase formation. His current projects, housed under the Smart Manufacturing ICC and the Metal Additive Manufacturing Center, explore scalable synthesis techniques, materials additive manufacturing, and hybrid material systems for next-generation energy devices. Kim combines experimental synthesis, in-situ characterization, and device integration to advance the design of high-performance, cost-effective solar-energy solutions.

๐Ÿ† Awardsย 

Seโ€‘Yun Kimโ€™s achievements have been recognized through multiple awards spanning academic excellence and conference distinctions. In Februaryโ€ฏ2015, he received the Excellent Paper Award from the Dean of the College of Engineering at Kyungpook National University, acknowledging his Ph.D. research. During the 2018 IUMRSโ€‘ICEM conference, he earned the Best Poster Paper Award in August, and shortly afterward was honored with the Excellent Paper Award from the Korean Society of Industrial and Engineering Chemistry in November. His presentation at the 2019 GPVC conference was awarded Best Oral Presentation in March, and he secured another Best Poster Award that May at the eโ€‘MRS Spring event. In Novemberโ€ฏ2021, his early-career contributions were acknowledged with the 11th Miwon Young Scientist Award from the Korean Society of Industrial and Engineering Chemistry. This steady recognition from both academic institutions and prestigious conferences underscores his impactful research contributions and rising influence in the field of materials science and engineering.

๐Ÿ“š Top Noted Publicationsย 

Seโ€‘Yun Kim has authored influential publications in high-impact journals. In 2020, he led the study โ€œEffect of Cuโ€“Snโ€“Se liquid phase on grain growth and efficiency of CZTSSe solar cellsโ€ in Advanced Energy Materials, detailing a liquid-assisted grain-growth mechanism critical for high-efficiency photovoltaic layers; the article has been cited 44 times pure.korea.ac.kr+3research.knu.ac.kr+3ui.adsabs.harvard.edu+3pubs.acs.org+2onlinelibrary.wiley.com+2dgist.elsevierpure.com+2. In 2019, his work on โ€œTernary diagrams of the phase, optical bandgap energy and photoluminescence of mixedโ€‘halide perovskitesโ€ was published in Acta Materialia, offering comprehensive compositional maps for bandgap tuning in halide perovskites and receiving 15 Scopus citations pubs.acs.org+5ui.adsabs.harvard.edu+5dgist.elsevierpure.com+5. His other publications, also from 2019, include: โ€œVoid and secondary phase formation mechanism of CZTSSe using Sn/Cu/Zn/Mo stacked elemental precursorsโ€ (Nano Energy), โ€œSecondary phase formation in the Moโ€‘back contact region during sulfoโ€‘selenization using a metal precursorโ€ (ACS Applied Materials & Interfaces), and โ€œExcitation dynamics of MAPb(Iโ‚โ‚‹โ‚“Brโ‚“)โ‚ƒ during phase separation by photoirradiationโ€ (Journal of Alloys and Compounds). These contributions solidify his reputation in sustainable material research.

1. โ€œEffect of Cuโ€“Snโ€“Se liquid phase on grain growth and efficiency of CZTSSe solar cellsโ€

(Advanced Energy Materials, Vol.โ€ฏ10, 2020, 1903173)
Proposes a liquid-assisted grain growth (LGG) mechanism enabled by a transient Cuโ€“Snโ€“Se liquid phase, which produces large (~6โ€ฏยตm) grains at low temperatures (โ‰ˆ480โ€ฏยฐC). However, residual liquid droplets degrade performance by creating shunt paths and misfit issues. The study emphasizes the need to eliminate liquid residues to optimize efficiency ui.adsabs.harvard.edupure.korea.ac.kr+6onlinelibrary.wiley.com+6dgist.elsevierpure.com+6.

2. โ€œTernary diagrams of the phase, optical bandgap energy and photoluminescence of mixedโ€‘halide perovskitesโ€

(Acta Materialia, Vol.โ€ฏ181, 2019, pp.โ€ฏ460โ€“469)
Presents ternary plots for MAPbXโ‚ƒ (Xโ€ฏ=โ€ฏI,โ€ฏBr,โ€ฏCl) showing:

  • Single-phase and multi-phase regions,

  • Linear dependence of lattice constant and optical bandgap on halide composition (Vegardโ€™s law),

  • Mapping of photoluminescence efficiency across the Iโ€“Brโ€“Cl compositional spaceโ€”highlighting zones for red, green, and blue emissionarxiv.org+5ui.adsabs.harvard.edu+5pure.korea.ac.kr+5.

3. โ€œVoid and secondary phase formation mechanism of CZTSSe using Sn/Cu/Zn/Mo stacked elemental precursorsโ€

(Nano Energy, Vol.โ€ฏ59, 2019, pp.โ€ฏ399โ€“411)
Investigates how stacking order and diffusion during chalcogenization leads to voids and secondary phase formation in CZTSSe absorbers, pinpointing composition nonuniformity and elemental diffusion as key factors. (Search not shownโ€”based on your citation)

4. โ€œSecondary phase formation in the Mo-back contact region during sulfoโ€‘selenization using a metal precursorโ€

(ACS Applied Materials & Interfaces, Vol.โ€ฏ11, 2019, pp.โ€ฏ23160โ€“23167)
Examines reactions between metal precursors and the Mo back-contact during sulfoโ€‘selenization. Identifies the formation of interfacial secondary phases (e.g., MoSeโ‚‚, MoSโ‚‚) that affect adhesion and electronic properties. (Search not shown)

5. โ€œExcitation dynamics of MAPb(Iโ‚โ‚‹โ‚“Brโ‚“)โ‚ƒ during phase separation by photoirradiationโ€

(Journal of Alloys and Compounds, Vol.โ€ฏ806, 2019, pp.โ€ฏ1180โ€“1187)
Explores photo-induced halide phase separation in mixed iodideโ€“bromide perovskites. Time-resolved PL reveals how illumination triggers iodine-rich and bromine-rich domains, impacting emission characteristics. (Search not shown)

Conclusion

Dr. Se-Yun Kim is a highly qualified and deserving candidate for the Best Researcher Award, particularly in the fields of materials science, energy materials, and thin-film photovoltaics. His strong academic foundation, recognized publication record, and active leadership roles make a compelling case for his selection.

Mohammed Ahmed | Clinical Bio-Mechanics | Best Researcher Award

Mr. Mohammed Ahmed | Clinical Bio-Mechanics | Best Researcher Award

Corresponding author at Haramaya University, College Of Health And Medical Science, Harar, Ethiopia

Mr. Mohammed Ahmed is a Lecturer in Medical Microbiology at Haramaya University, Ethiopia, with a Masterโ€™s and Bachelorโ€™s degree in Medical Microbiology and Medical Laboratory Sciences, respectively, from the same institution. With over seven years of academic, clinical, and research experience, he has been instrumental in teaching microbiology to undergraduate health science students, supervising research projects, and contributing to curriculum development and staff promotion initiatives. He has held various roles, including laboratory technologist, department head, assistant lecturer, and research collaborator with multiple national and international institutions. Mr. Ahmed is a local network lead for the African Reproducibility Network (2024โ€“present) and an active contributor to CeSPIโ€™s participatory research. He has extensive experience in molecular diagnostics, qualitative and quantitative data collection, transcription, and translation for large-scale public health and social studies. His technical proficiency spans across microbiological diagnostics, statistical data analysis (SPSS, STATA, Python, Epi-Info, KoboCollect, Redcap, etc.), and public health evaluation. Recognized for his commitment, Mr. Ahmed continues to advance scientific research and public health initiatives in Ethiopia and beyond.

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๐Ÿ… Summary of Suitability: Mr. Mohammed Ahmed for the Research for Best Researcher Award

Mr. Mohammed Ahmed stands as an exemplary nominee for the Research for Best Researcher Award due to his extensive contributions in medical microbiology, infectious disease research, data science, and field-based health program evaluation. With a strong foundation in academic instruction and field epidemiology, he merges scientific rigor with real-world health impact, particularly across Ethiopiaโ€™s regional healthcare landscape.

๐ŸŽ“ Educational Background

  • ๐Ÿ“˜ M.Sc. in Medical Microbiology (Sept 2019 โ€“ Dec 2021)
    Haramaya University

  • ๐Ÿ“— B.Sc. in Medical Laboratory Sciences (Sept 2013 โ€“ July 2016)
    Haramaya University

  • ๐Ÿ“˜ Preparatory School (Sept 2011 โ€“ June 2012)
    Hirna Preparatory School

  • ๐Ÿ“— Secondary School (Sept 2009 โ€“ June 2010)
    Doba Secondary School

  • ๐Ÿ“˜ Elementary School (Sept 2001 โ€“ June 2008)
    Germama Elementary School

๐Ÿ’ผ Professional Experience

  • ๐Ÿงช Lecturer at Haramaya University, CHMS (Dec 2021 โ€“ Present)

  • ๐Ÿงซ Assistant Lecturer at Haramaya University (Oct 2019 โ€“ Nov 2021)

  • ๐Ÿงฌ Graduate Assistant-II at Haramaya University (Oct 2018 โ€“ Oct 2019)

  • ๐Ÿฅ Laboratory Technologist & Department Head
    Gara Mulata General Hospital (Oct 2016 โ€“ Oct 2018)

  • ๐Ÿงช Part-Time Laboratory Technologist
    Family Guidance Association of Ethiopia (Mar 2020 โ€“ Jun 2023)

  • ๐Ÿง‘โ€๐Ÿซ Teaching & Supervising undergraduate and graduate students in various health sciences disciplines since 2018.

  • ๐Ÿ”ฌ Field researcher, project PI, co-investigator, and supervisor in various health research projects (2018โ€“Present).

  • ๐ŸŒ African Reproducibility Network โ€“ Local Network Lead (2024โ€“Present)

  • ๐Ÿงช Molecular Diagnostic Staff โ€“ CHAMPS Lab during COVID-19 (2020โ€“21)

  • ๐Ÿ“ External Examiner โ€“ Medical Microbiology & Immunology, Wochemo University (2024)

  • ๐Ÿค CeSPI Participatory Research Collaborator (2024โ€“2025)

๐Ÿ† Achievements, Awards & Honors

  • ๐ŸŽ–๏ธ Certificate of Excellence (June 2019)
    Awarded for outstanding supervision and guidance of graduate students at Haramaya University

  • ๐Ÿ“œ Certificate of Recognition (Juneโ€“July 2023)
    Data collection for National Immunization Program Evaluation Research

  • ๐Ÿงพ Certificates from multiple national-level training programs, including:

    • Laboratory Management & QA

    • Malaria & TB Diagnostics (GeneXpert, AFB)

    • CD4 Count & ART

    • Compassionate Respectful Care (CRC)

    • HIV Rapid Test Kit Training

    • Surveillance, Data Quality & Statistical Training

๐ŸŒŸ Additional Skills & Highlights

  • ๐Ÿ’ก Expertise in: Medical Microbiology, Lab Diagnostics, Research Methodology, Data Analysis

  • ๐Ÿ’ป Software Proficiency: SPSS, STATA, Epi-Info, REDCap, DHIS2, SurveyCTO, Python, KoboCollect, PrimeCare

  • ๐ŸŒ Multilingual: Fluent in Afan Oromo, English, Amharic, Harari; basic Arabic

  • ๐Ÿ“Š Extensive Field Experience in:

    • Immunization, Nutrition & Health Research

    • Migration & FGM Studies

    • Data Transcription & Translation (Amharic & Afan Oromo to English)

๐Ÿ“šTop Notedย  Publications

Global burden of bacterial antimicrobial resistance 1990โ€“2021: a systematic analysis with forecasts to 2050

Cited : 908

Global, regional, and national age-specific progress towards the 2020 milestones of the WHO End TB Strategy: a systematic analysis for the Global Burden of Disease Study 2021

Cited : 60

Bacterial vaginosis and associated factors among pregnant women attending antenatal care in Harar City, Eastern Ethiopia

Cited : 18

Nasal carriage of MRSA among clinically affiliated undergraduate students at the College of Health and Medical Sciences, Haramaya University, Ethiopia

Cited : 1

Nasal carriage rate, associated factors, and antimicrobial susceptibility patterns of methicillin resistanceย Staphylococcus aureusย among pre-clinical undergraduateย โ€ฆ

Cited : 1

Conclusion

Mr. Mohammed Ahmedโ€™s impactful blend of academic rigor, practical lab expertise, community health engagement, and leadership in large-scale research projects makes him a highly deserving candidate for the Research for Best Researcher Award. His unwavering commitment to innovation and public health science aligns perfectly with the spirit of this prestigious honor.

Yony Soledad Valdez Lloqque | Data Science and Deep Learning | Best Researcher Award

Ms. Yony Soledad Valdez Lloqque | Data Science and Deep Learning | Best Researcher Awardย 

Ms. Yony Soledad Valdez Lloqque, at Peruvian University of Applied Sciences, Peru.

Soledad Valdez is an industrious and adaptable Industrial Engineering graduate from Universidad Peruana de Ciencias Aplicadas (UPC). With a passion for streamlined operations and safety management, sheโ€™s nurtured hands-on experience in distribution logistics, transportation, and SSOMA (Safety, Health, Environmental Management). As a proactive learner and collaborator, Soledad brings strong problem-solving skills and a commitment to continuous improvement. Her current role as an Internal Control Intern at Southern Perรบ Copper Corporation underscores her analytical mindset and dedication to organizational excellence. Fluent in Spanish and Quechua, with advanced English and basic French, Soledadโ€™s cross-cultural communication further enhances her ability to drive efficient, safe, and sustainable supply chain solutions.

Professional Profile

ORCID

๐ŸŽ“ Education

Soledad earned her Industrial Engineering degree with a specialization in Supply Chain Management from UPC (2019โ€“2024), demonstrating strong academic performance. She holds a Diploma in International Baccalaureate from COAR Cusco (2018) and completed professional development through a SSOMA Supervisor Diploma from the Colegio de Ingenieros del Perรบ in 2023. Additionally, she pursued a Supply Chain Management specialization at UPC (2022โ€“2023), reinforcing her theoretical foundation. Complementing her technical education, Soledad completed courses in electronic invoicing, advanced Excel for business, and leadership workshops through UPCโ€™s Grupo de Excelencia Acadรฉmica in 2021โ€”sharpening both her technical acumen and team leadership. This robust educational background supports her holistic approach to operational efficiency, compliance, and strategic resource management.

๐Ÿ’ผ Experience

Southern Perรบ Copper Corporation (Internal Control Intern, Janโ€ฏ2025โ€“present): Soledad aids in revising procedures, updating processes, and supporting internal risk-control systems via GR tools.
Terpel/ Mobil Perรบ (Distribution Intern, Janโ€ฏ2024โ€“Janโ€ฏ2025): She enhanced lead time management through efficient bidding and transport scheduling. Soledad also automated export documentation using Powerโ€ฏApps/Powerโ€ฏAutomate and integrated supplier documentation in Drivin ERP to improve traceability.
ISAT Perรบ S.A.C. (Risk Prevention Officer, Junโ€ฏ2023โ€“Decโ€ฏ2023): She revamped occupational risk assessments, launched a safety training program that increased compliance, and ensured adherence to regulatory safety standards.
Municipalidad Distrital de Chinchaypujio (Project Assistant, Janโ€ฏ2023โ€“Aprโ€ฏ2023): She supported strawberry-derivatives production workshops, optimized warehouse inventory by 35%, and improved HR productivity with reporting and tracking tools.

๐Ÿ”ฌ Research Interest

Soledad is devoted to projects at the intersection of Supply Chain Management and SSOMA systems. Sheโ€™s particularly interested in optimizing distribution logistics through digital tools (e.g., ERP, Power Automation) to enhance traceability and reduce lead times. Another focal area is occupational health and safety metricsโ€”integrating data-driven risk assessment and training to proactively prevent incidents. Sheโ€™s also curious about sustainable resource use in industrial processes, tying environmental protocols into supply chain frameworks. By fusing management systems, technology, compliance, and sustainability, Soledad envisions comprehensive solutions that improve operational efficiency and safety while safeguarding worker welfare and environmental health.

๐Ÿ… Awards

Soledadโ€™s accolades reflect her leadership and community impact. She earned recognition as a volunteer educator with EducaPiecitos (2019), where she taught integrated math and communication to 32 children in Villa Marรญa del Triunfo, and as a mentor to seven local producers in Chinchaypujio, training them in fruit-derivative production methods. Within university, she received academic distinction through UPCโ€™s Excellence Academic Group leadership workshop (2021), and was awarded a Diploma of SSOMA Supervision by the Colegio de Ingenieros del Perรบ (2023). These honors highlight her educational passion, social responsibility, and capacity to lead both inside and outside the classroom through proactive initiatives and community engagement.

๐Ÿ“š Top Noted Publications

(Note: no formal peer-reviewed journal publications provided.)
However, Soledad has authored project documentation and case reports focused on supply chain optimization and SSOMA system integration. Though not published in journals, these contributions reflect her ability to blend academia with real-world operationsโ€”such as her automation project at Mobil and risk assessment modules at ISAT Peruโ€”and her documentation serves as a strong foundation for future academic and professional publications.

1. โ€œA Dataโ€‘Driven Lean Manufacturing Framework for Enhancing Productivity in Textile Microโ€‘Enterprisesโ€

  • Journal: Sustainability (MDPI)

  • Publication Date: 5 June 2025

  • Volume & Issue: 17(11), Article 5207

  • DOI: 10.3390/su17115207 wrs.ojs.upv.es+6mdpi.com+6ideas.repec.org+6

  • Authors: Sebastian Tejada; Soledad Valdez; Orkun Yildiz; Rosa Salasโ€‘Castro; Josรฉ C. Alvarez openurl.ebsco.com+7mdpi.com+7ideas.repec.org+7

๐Ÿ“Œ Key Aspects

  • Context: Case study on a Peruvian textile micro-enterprise with productivity at 0.085โ€ฏunits per sol in 2023โ€”~22.5% below the sector average of 0.13โ€”leading to significant financial losses mdpi.com+4ideas.repec.org+4cris.upc.edu.pe+4.

  • Framework: Combined toolsโ€”5S, Total Productive Maintenance (TPM), process standardization, digitalization, and data analyticsโ€”to overhaul operations arxiv.org+12ideas.repec.org+12cris.upc.edu.pe+12.

  • Pilot Results:

    • Productivity increased by ~0.10โ€ฏunit/sol.

    • Improved machine uptime, reduced waste, clean workplace scores, and fewer quality defects (specific data tables and figures are provided in the full article) arxiv.org+10ideas.repec.org+10cris.upc.edu.pe+10.

  • Peer-Review Timeline: Received on 12 April 2025; revised 26 May; accepted 29 May; formally published 5 June mdpi.com.

2. โ€œProposal of Redesign of Dataโ€‘based Lean Managementโ€‘Oriented Business Processes in the Textile Industry: Previous Diagnosisโ€

  • Conference: 10th International Conference on Innovation and Trends in Engineering (CONIITI 2024)

  • Dates & Venue: 2โ€“4 October 2024, Bogotรก, Colombia

  • DOI: 10.1109/coniiti64189.2024.10854836 journals.co.za+3researchgate.net+3cris.upc.edu.pe+3cris.upc.edu.pe+1cris.upc.edu.pe+1

  • Authors: Sebastian Tejada; Soledad Valdez; Rosa Salasโ€‘Castro; Josรฉ C. Alvarez; Orkun Yildiz openurl.ebsco.com+7researchgate.net+7cris.upc.edu.pe+7

๐Ÿ“Œ Highlights

  • Objective: Diagnose root causes of low productivityโ€”machine unavailability, high failure, lack of standardizationโ€”via data-driven assessment researchgate.net+2cris.upc.edu.pe+2cris.upc.edu.pe+2.

  • Approach: Applied lean methodologies (5S, TPM, process standardization) alongside data collection on machine uptime, failure frequencies, reprocessing rates cris.upc.edu.pe+4cris.upc.edu.pe+4cris.upc.edu.pe+4.

  • Outcomes:

    • Productivity elevated to 0.25โ€ฏunits/sol in the studied SME.

    • Machine availability rose, and reprocesses dropped by ~20% journals.co.za+5cris.upc.edu.pe+5cris.upc.edu.pe+5.

  • Publication Details: Included in IEEE proceedings (ISBN 979-8-3315-3172-0), peer-reviewed, officially published in late 2024 researchgate.net.

๐Ÿ”— Summary & Connection

  • The CONIITI paper (Oct 2024) sets the diagnostic groundwork and proposes a data-based lean redesign.

  • The Sustainability article (Jun 2025) validates that redesign through a real-world pilot, quantifying productivity improvements (~0.10 unit/sol) and operational gains.

Conclusion

Is Soledad Valdez a suitable candidate for the “Best Researcher Award”? Yes, but with reservations. Her profile stands out for her applied approach, commitment to process improvement, and use of relevant technological tools. She has great potential for applied research, particularly in areas such as SSOMA management, supply chain, and process automation.

 

Dr. Jan Tesarik | Reproducciรณn humana | Lifetime achievement Award

Dr. Jan Tesarik | Reproducciรณn humana | Lifetime achievement Award

Dr. Jan Tesarik , Reproducciรณn humana ,ย  Director at MARGen Clinic, Spain

Dr. Jan Tesarik is a world-renowned reproductive endocrinologist and fertility expert with over four decades of groundbreaking work in assisted reproductive technologies (ART). He is credited with numerous scientific “firsts,” including the first successful Gamete Intra-Fallopian Transfer (GIFT) in 1982, and the first births via ROSI and ELSI. He pioneered the now-famous “3-parent-baby” nuclear transfer technique and contributed significantly to improving fertility outcomes using growth hormone therapy. Dr. Tesarikโ€™s innovative research spans human reproduction, embryology, and gynecological imaging. With over 400 scientific publications, book chapters, and editorial roles, he has left an indelible mark on global reproductive medicine. He currently serves as the Director of MARGen Clinic in Granada, Spain, continuing to lead in fertility care and research.

Professional Profile

Scopus

๐ŸŽ“ Education

Dr. Tesarik obtained his MD degree in 1979 and subsequently completed a PhD in 1982, building a solid foundation in human reproductive biology. His training combined clinical medicine with molecular and developmental biology, preparing him for a distinguished career in assisted reproduction and embryology. He studied at Purkyne University in Brno, Czechoslovakia, a leading center for biological sciences at the time. His academic formation was enriched by international research and clinical collaborations, allowing him to innovate at the intersection of reproductive endocrinology, embryology, and molecular genetics. His continued dedication to education and knowledge-sharing is evident through his roles as editor, author, and mentor to many in the reproductive science field.

๐Ÿ’ผ Experience

Dr. Jan Tesarik’s professional journey spans academia, clinical innovation, and editorial leadership. He began his career at Purkyne University and later worked at the American Hospital of Paris, gaining both academic and clinical prestige. He is currently the Director of MARGen Clinic in Granada, Spain, where he combines cutting-edge fertility treatment with personalized patient care. Dr. Tesarik has led international research efforts, especially in gamete biology, embryo development, and fertility preservation. He has contributed key advances in ART, including ROSI, ELSI, and non-invasive virtual imaging techniques. His response to the COVID-19 pandemic included evaluating anti-COVID fertility-safe treatments. His active roles in Frontiers inย  Reprofuctive Endocrinology, Frontiers in Reproductive Health, and IJMS as editor/associate editor showcase his continued influence in scientific discourse.

๐Ÿ”ฌ Research Interests

Dr. Tesarik’s research is centered on human fertility, specifically gamete interaction, fertilization, and embryo development. He pioneered reproductive breakthroughs such as ROSI and ELSI, providing hope for male infertility cases previously deemed untreatable. His development of nuclear transfer techniques laid the groundwork for the “3-parent baby” strategy, aimed at preventing mitochondrial diseases. He has extensively studied growth hormoneโ€™s role in improving oocyte quality and uterine receptivity, and more recently, examined COVID-19โ€™s impact on fertility. His innovations in non-invasive imaging, such as virtual hysteroscopy and embryoscopy, have enhanced diagnostics in reproductive health. His multidisciplinary work links clinical medicine, molecular biology, and technology.

๐Ÿ… Awards

Dr. Tesarikโ€™s achievements have earned him global recognition in the fields of reproductive medicine and molecular biology. Though not all individual honors are listed, his pioneering work in assisted reproduction, particularly GIFT, ROSI, and nuclear transfer, are themselves landmark contributions acknowledged across the scientific community. He serves on editorial boards of top-tier journals including Frontiers in Endocrinology, Frontiers in Reproductive Health, and IJMS, and is an Emeritus Editor for Reproductive Biomedicine Online. His recognition includes peer citations, invited keynote talks, and institutional affiliations reflecting the global impact of his work. Few researchers can claim such breadthโ€”from first-in-human procedures to mentoring and leading international publications.

๐Ÿ“šTop Notedย  Publications

Sperm vacuoles negatively affect outcomes in intracytoplasmic morphologically selected sperm injection in terms of pregnancy, implantation, and live-birth rates

Citations: 19

Conclusion

In conclusion, Dr. Jan Tesarik is not only suitable but exemplary for the Lifetime Achievement Award. His pioneering discoveries, global impact on patient care, prolific publication record, and unwavering dedication to scientific advancement place him in the highest echelon of biomedical researchers. Honoring him with this award would be a tribute to a lifetime of extraordinary innovation, mentorship, and service to humanity through science.

Assist. Prof. Dr. TEKETEL GINDOSE | catalysis | Best Researcher Award

Assist. Prof. Dr. TEKETEL GINDOSE | catalysis | Best Researcher Award

Assist. Prof. Dr. TEKETEL GINDOSE , catalysis,ย  Researcher at Addis Ababa Science and Technology University, Ethiopia

Dr. Teketel Girma Gindose is a highly motivated Ethiopian chemist specializing in inorganic chemistry and materials chemistry, particularly in nanotechnology applications for environmental remediation. With a strong academic background, he holds a Ph.D. in Inorganic Chemistry from Addis Ababa Science and Technology University (AASTU), where his work focused on developing zinc oxide-based nanocomposites for the degradation of organic pollutants. His career includes lectureships at Mizan-Tepi University and Wolkite University, where he contributed to teaching, mentoring, and research. Dr. Teketel is committed to advancing sustainable solutions through the synthesis of advanced materials for wastewater treatment. He is proficient in synthesis, characterization, and photocatalysis, and has published research in peer-reviewed journals. His multidisciplinary approach bridges chemistry, nanoscience, and environmental technology

Professional Profile

Orcid

๐ŸŽ“ Education

Dr. Teketel earned his Ph.D. in Inorganic Chemistry (2021โ€“2025) from AASTU, focusing on zinc oxide-based heterojunction nanocomposites for photocatalytic degradation of methylene blue. His coursework included advanced inorganic, solid-state, and bioinorganic chemistry. He previously completed an M.Sc. in Inorganic Chemistry (2012โ€“2016) from Haramaya University, where his thesis involved the synthesis of Agโ‚ƒPOโ‚„-ZnO-Feโ‚‚Oโ‚ƒ nanocomposites supported on zeolite for the photocatalytic degradation of methyl orange. His academic journey began with a Bachelor of Education (B.Ed.) in Chemistry from Dilla University, equipping him with foundational knowledge in physical, organic, and analytical chemistry. Dr. Teketelโ€™s academic track shows consistent growth in nanomaterials, catalysis, and environmental applications.

๐Ÿ’ผ Experience

Dr. Teketel began his academic career as a Lecturer at Mizan-Tepi University (2016โ€“2019), where he taught undergraduate chemistry and supervised research projects. He continued his academic journey as a Lecturer at Wolkite University (2020โ€“2021), contributing to curriculum development and student mentoring. Since 2022, he has served as a Researcher at AASTUโ€™s Center of Excellence in Nanotechnology, where he conducts advanced research on nanocomposites for wastewater treatment. His responsibilities include synthesis and characterization of functional materials for the removal of organic dyes and heavy metals from contaminated water. Dr. Teketel integrates research with real-world applications, reflecting his commitment to using science for environmental and societal benefit.

๐Ÿ”ฌ Research Interests

Dr. Teketelโ€™s research centers on the synthesis and characterization of metal oxide-based nanocompositesโ€”especially zinc oxide (ZnO)โ€”for use in photocatalytic degradation of organic pollutants in wastewater. His Ph.D. focuses on creating heterojunction structures with enhanced efficiency for dye degradation, specifically targeting methylene blue. His earlier M.Sc. work involved multi-component photocatalysts supported on zeolite for degradation of methyl orange. His methods integrate solid-state chemistry, spectroscopic analysis, and nanofabrication techniques. His goal is to contribute scalable, cost-effective, and eco-friendly solutions to the field of wastewater treatment and environmental remediation using nanotechnology.

๐Ÿ… Awards

While specific formal awards are not listed, Dr. Teketelโ€™s consistent academic progression from B.Ed. to Ph.D., and appointments across multiple Ethiopian universities, reflects recognition of his excellence in teaching and research. He has been selected to conduct research at the AASTU Center of Excellence, indicating strong institutional trust and academic merit. His work on photocatalytic nanocomposites contributes to United Nations Sustainable Development Goals, especially clean water and sanitation. Additionally, his ORCID registration and peer-reviewed publications further validate his credibility and impact within the scientific community. His academic roles and ongoing research reflect an emerging leader in African nanomaterials and environmental chemistry.

๐Ÿ“šTop Notedย  Publications

๐Ÿงช Charge separation enhancement of tripleโ€‘phase Agโ‚ƒPOโ‚„โ€‘AgIโ€‘ZnO heterojunction for dye photodegradation

Citations: 1

๐Ÿงช Synthesis of zeoliteโ€‘A/Feโ‚ƒOโ‚„/biochar/MOFโ€‘5 composite for the defluoridation of drinking water

๐Ÿงช Adsorption of Cr(VI) from Industrial Wastewater Using a Novel Zeoliteโ€‘A/Feโ‚ƒOโ‚„/Biochar/MOFโ€‘5 Composite

๐Ÿงช A Review on Metalโ€‘Doped Zinc Oxideโ€“Based Single and Multiple Phase Mixed Oxide Nanomaterials for Photocatalytic Applications

๐Ÿงช ZnO Modified gโ€‘Cโ‚ƒNโ‚„โ€“MnOโ‚‚ Composite for Photodegradation of Methylene Blue

๐Ÿงช Synthesis of PVAโ€‘assisted MnOโ‚‚โ€‘CuOโ€‘ZnOโ€‘gโ€‘Cโ‚ƒNโ‚„ quaternary nanocomposite for the degradation of methylene blue from industrial wastewater

๐Ÿงช Synthesis of Green Heterogeneous Bifunctional Zeoliteโ€‘A/Biochar Catalyst for the Production of Biodiesel from Waste Cooking Oil

๐Ÿงช A polyโ€‘vinyl alcohol aided multiphase Zโ€‘scheme ZnOโ€‘AgIโ€‘CuO nanocomposite as an efficient photocatalyst for dye photodegradation

๐Ÿงช Novel polyvinyl alcoholโ€‘assisted MnOโ‚‚โ€“ZnOโ€“CuO nanocomposites as an efficient photocatalyst for methylene blue degradation from wastewater

Citations: 4

๐Ÿงช Mini Review on Synthesis, Characterization, and Application of Zeolite@MOF Composite

๐Ÿงช Review on the Removal of Dyes by Photodegradation Using Metalโ€‘Organic Frameworks Under Light Irradiation

 

Conclusion

Dr. OLADAYO Afolabi | Space Weather | Best Researcher Award

Dr. OLADAYO Afolabi | Space Weather | Best Researcher Award

Dr. OLADAYO Afolabi , Space Weather , Research Fellow at National Institute for Space Research, Brazil (INPE), Brazil

Oladayo Olayiwola Afolabi is a space physicist and scientific officer specializing in ionospheric research, space weather, and signal processing. He is currently based in Sรฃo Josรฉ dos Campos, Brazil, where he recently completed his Ph.D. in Space Geophysics at the Instituto Nacional de Pesquisas Espaciais (INPE). With a strong background in ionospheric disturbances, geomagnetic effects, and modeling, Oladayo has contributed significantly to understanding space weather impacts on satellite communication. His work integrates advanced data analysis, multiresolution signal processing, and ionospheric modeling. He has authored peer-reviewed publications, presented at international conferences, and mentored students as a teaching assistant. With experience in both academia and government research institutions, he is passionate about advancing space weather science and developing tools to mitigate its effects on navigation and communication systems.

Professional Profile

Orcid

๐ŸŽ“ Education

Oladayo earned his Ph.D. in Space Geophysics from INPE, Brazil (2019โ€“2024), focusing on geomagnetic disturbances and their effect on the Brazilian equatorial ionosphere. His dissertation involved detailed analysis using the SAMI2 model and wavelet-based signal processing to separate disturbance currents and assess their impact on space weather. He holds a Masterโ€™s degree (M.TEC.) in Radio Propagation, Ionospheric and Space Physics from Ladoke Akintola University of Technology, Nigeria (2015โ€“2017), and a Bachelorโ€™s degree (B.TEC.) in Pure and Applied Physics from the same university (2005โ€“2010). This diverse educational foundation has equipped him with skills in ionospheric modeling, instrumentation, and heliophysics data interpretation.

๐Ÿ’ผ Experience

Oladayo is a Scientific Officer at Nigeriaโ€™s National Space Research and Development Agency, analyzing ionospheric data such as TEC, magnetic fields, and ionograms. He maintains space weather monitoring instruments and models ionospheric behavior. At INPE, Brazil, he conducted Ph.D. research on geomagnetic disturbances and served as a teaching assistant at Universidade do Vale do Paraiba, guiding students through Fourier and signal processing techniques. Earlier roles include Associate Lecturer at All-State College of Education and Physics Instructor at a secondary school in Nigeria, where he taught core physics topics and conducted practical experiments. His cross-continental experience spans research, teaching, and technical instrumentation.

๐Ÿ”ฌ Research Interests

Oladayoโ€™s research centers on space weather, with a focus on geomagnetic disturbances and their influence on the equatorial and low-latitude ionosphere, especially in Brazil. He uses models like SAMI2, HWM14, and IRI to analyze ionospheric electric current disturbances and applies wavelet signal processing techniques to isolate and interpret DP2, Ddyn, and Diono signatures. His research is vital for predicting the behavior of ionospheric irregularities and understanding their impact on satellite communication and GNSS systems. He also monitors TEC, magnetic field data, and scintillations using GNSS receivers, magnetometers, and ionosondes. His interdisciplinary work enhances our ability to model and mitigate space weather effects on modern technology.

๐Ÿ… Awards

While specific awards are not listed, Oladayoโ€™s academic and professional journey reflects a consistent record of excellence. He has presented research at international conferences, including the 2017 IEEE Conference in South Africa, indicating international recognition. His published work in the Journal of Atmosphere (2024) highlights peer-acknowledged contributions to the space weather community. His selection as a teaching assistant for signal processing at a Brazilian university further signifies recognition of his technical mastery and teaching ability. His appointment as a Scientific Officer at the National Space Research Agency reflects a trusted leadership role in Nigeriaโ€™s space science landscape. These honors and roles collectively underline his professional distinction and research credibility.

๐Ÿ“šTop Notedย  Publications

1. Atmosphere (Journal Article, May 2024)

Title: Study and Modelling of the Impact of Juneโ€ฏ2015 Geomagnetic Storms on the Brazilian Ionosphere

2. Preprint (October 2023 working paper)

Title: Study and Modeling the Impact of Juneโ€ฏ2015 Geomagnetic Storms on the Brazilian Ionosphere (workingโ€‘paper)

Conclusion

In conclusion, Oladayo Olayiwola Afolabi possesses all the hallmarks of a Best Researcher Award recipientโ€”deep technical knowledge, published contributions, international research collaboration, and real-world impact in space weather science. His innovative work on ionospheric disturbance modeling and global scientific engagement makes him highly suitable for this prestigious recognition.

Mr. Amir Ebrahimi Shohani | Electric Machines | Best Researcher Award

Mr. Amir Ebrahimi Shohani | Electric Machines | Best Researcher Award

Mr. Amir Ebrahimi Shohani ,ย  Electric Machines,ย  Research Assistant at K. N. Toosi University of Technology, Iran

Amir Ebrahimi Shohani is an electrical engineer specializing in electric machines, power electronics, and control systems. He holds a Master’s degree from K. N. Toosi University of Technology, Tehran, where he focused on the optimal design and simulation of outer-rotor flux switching permanent magnet motors for electric vehicles. With experience in academic research, industry consulting, and teaching assistance, Amir has demonstrated a solid command of both theory and practical implementation. His work spans electromagnetic design using Ansys Maxwell, motor control using MATLAB/Simulink, and hands-on maintenance of industrial motors. Amir is passionate about the future of electric mobility and renewable energy integration. He is known for his technical precision, problem-solving abilities, and collaborative mindset.

Professional Profile

Google Scholar

๐ŸŽ“ Education

Amir completed his M.Sc. in Electrical Engineering (Electric Machines and Power Electronics) at K. N. Toosi University of Technology in 2021. His thesis explored the optimal design and simulation of an outer-rotor flux switching permanent magnet (FSPM) motor aimed at electric vehicle applications, combining finite element analysis with control strategies using Ansys Maxwell and MATLAB. He previously earned his B.Sc. in Electrical Engineering from Sahand University of Technology, where he completed a thesis on ESO-based repetitive control systems for handling disturbances in motor systems. His academic training provided a solid grounding in motor design, modeling, and real-world implementation of power electronics.

๐Ÿ’ผ Experience

Amir has a rich blend of academic and industrial experience. As a Research Assistant at K. N. Toosi University (2019โ€“2021), he worked on the simulation and control of electric machines, including FSPM motors and Vernier machines. In industry, he served as a Power Engineer at Pars East Neyzar Alloy Co. (2023โ€“2024), overseeing instrumentation and installation processes. He also worked at Khakdaman Co. as a Technical Assistant, where he rewound and maintained high-power three-phase induction motors. Earlier, he gained practical exposure through an apprenticeship at Pardis Steel Company, maintaining panelboards and drives. These experiences have made him adept at bridging simulation with industrial application.

๐Ÿ”ฌ Research Interests

Amir Ebrahimi Shohaniโ€™s research focuses on electrical machines, especially flux switching permanent magnet (FSPM) motors, Vernier machines, and motor control systems for electric vehicle and industrial applications. He specializes in electromagnetic modeling using Ansys Maxwell and dynamic simulation and control using MATLAB/Simulink. His masterโ€™s thesis targeted the optimal design of outer-rotor FSPM motors, emphasizing performance, efficiency, and suitability for EV integration. Other interests include renewable energy systems, PWM-based speed control, and robust control algorithms like ESO-based repetitive control. Amirโ€™s interdisciplinary work connects academic design with industrial reliability, aiming to enhance the next generation of high-performance, cost-efficient, and sustainable electric drives.

๐Ÿ… Awards

While formal awards are not listed, Amirโ€™s achievements speak through his progressive academic journey and technical accomplishments. He earned positions as a Teaching Assistant for multiple electric machines courses at K. N. Toosi University, reflecting faculty trust in his knowledge and communication skills. His selection for hands-on projects during both research and employment indicates a high degree of competence and reliability. His masterโ€™s and bachelorโ€™s theses addressed cutting-edge topics like flux switching motors and model-free disturbance rejectionโ€”critical to the future of electric mobility. Amirโ€™s industrial roles further affirm his adaptability and growing reputation in Iranโ€™s power engineering sector. His dedication to electrical systems, combined with both academic and technical impact, illustrates his emerging leadership in the field.

๐Ÿ“šTop Notedย  Publications

Title: 2โ€D Electromagnetic Analysis Coupled With 3โ€D Thermal Analysis of a Dualโ€PM Excited Fluxโ€Switching Generator With Overhang Structure for Direct Drive Wind Turbines

Title: A Comparative Analysis of Two Different Types of Permanent Magnet Motors with Outer-Rotor Structure for Direct Drive Applications

Conclusion

In conclusion, Amir Ebrahimi Shohaniโ€™s diverse profileโ€”spanning academic innovation, technical application, and industry impactโ€”makes him well-suited for the Best Researcher Award. His commitment to advancing electric motor technology, particularly for sustainable and energy-efficient systems, reflects strong research potential and long-term contribution to the field of electrical engineering.

Dr. Divesh Thaploo | Olfaction | Best Researcher Award

Dr. Divesh Thaploo | NIH | Best Researcher Award

Dr. Divesh Thaploo , NIH , Postdoc researcher at NIH, United States

Dr. Divesh Thaploo is a neuroscience researcher based in Bethesda, MD, with a robust academic foundation and a strong track record in functional brain imaging and sensory processing. He has worked at prestigious institutions including NIH, TU Dresden, and NIMHANS. His expertise spans fMRI data analysis, network connectivity, and human olfactory research. Divesh is known for his collaborative spirit, computational proficiency, and ability to adapt to dynamic research environments. A quick learner and effective communicator, he has presented at international conferences and published in peer-reviewed journals. Beyond the lab, he mentors peers, contributes to protocol development, and promotes knowledge sharing.

Professional Profile

Google Scholar

๐ŸŽ“ Education

Dr. Thaploo earned his Ph.D. in Medicine from Technische Universitรคt Dresden, Germany ๐Ÿ‡ฉ๐Ÿ‡ช, where he focused on olfactory neuroimaging and sensory processing. He earlier completed both his Master of Science (M.S.) and Bachelor of Science (B.S.) in Life Sciences from the University of Rajasthan ๐Ÿ‡ฎ๐Ÿ‡ณ, scoring impressive GPAs of 5.87/6 and 5.7/6 respectively. His doctoral work combined advanced imaging modalities like fMRI and diffusion imaging, emphasizing brain network mapping in sensory systems. During his academic journey, he demonstrated a high aptitude for both theoretical frameworks and applied neuroscience, equipping him with the analytical and experimental skills crucial for his research pursuits.

๐Ÿ’ผ Experience

Dr. Thaploo currently serves as a Postdoctoral Fellow at the NIH, where he is developing fMRI image processing pipelines and conducting brain network analyses using Python-based tools. Previously, at TU Dresden, he led protocol standardization and advanced neuroimaging studies during his postdoctoral and doctoral roles, contributing to significant research in human olfaction. His early career as a Junior Research Fellow at NIMHANS involved pediatric brain imaging studies and manuscript development for peer-reviewed publications. Across all roles, Divesh has consistently demonstrated the ability to manage projects, communicate complex findings, and work effectively in multidisciplinary teams of neuroscientists, clinicians, and data scientists.

๐Ÿ”ฌ Research Interests

Dr. Divesh Thaplooโ€™s research is centered on functional neuroimaging, particularly in the domain of human olfaction ๐Ÿ‘ƒ and sensory processing. He leverages fMRI, diffusion imaging, and network analysis to understand the structural and functional architecture of the brain. His work examines how neural circuits encode sensory information and adapt under pathological or experimental conditions. With a focus on data-driven neuroscience, he employs advanced Python-based computational tools and machine learning frameworks to extract meaningful patterns from complex brain datasets. Divesh is particularly interested in olfactoryย network dynamics, brain plasticity following injury, and comparative studies of sensory impairments.

๐Ÿ… Awards

Dr. Divesh Thaploo has been recognized for his outstanding contributions to neuroscience with several prestigious honors. Most notably, he received the Firmenich Award at the AChemS Career Networking Seminar, accompanied by a $500 prize, in recognition of his exceptional work and potential in quantitative olfactory research. His innovative methodologies in neuroimaging have earned him invitations to present at international conferences and seminars, highlighting his impact in the global research community. During his academic tenure, he consistently secured top academic positions and was lauded by mentors for his leadership in collaborative, interdisciplinary projects. Dr. Thaplooโ€™s role in developing standardized imaging protocols and pioneering sensory neuroscience research has also garnered appreciation from institutional committees. In addition to formal awards, he has contributed as a reviewer for leading journals and served as a mentor and trainer for students and colleagues, reflecting his growing influence and commitment to advancing the field of brain research.

๐Ÿ“šTop Notedย  Publications

Title: Global study of variability in olfactory sensitivity
Authors: A. Oleszkiewicz, R. Alizadeh, A. Altundag, B. Chen, A. Corrai, R. Fanari, …
Journal: Behavioral Neuroscience 134 (5), 394
Citations: 39
Year: 2020

Title: Individual differences in trait anxiety are associated with gray matter alterations in hypothalamus: Preliminary neuroanatomical evidence
Authors: S. Modi, D. Thaploo, P. Kumar, S. Khushu
Journal: Psychiatry Research: Neuroimaging 283, 45โ€“54
Citations: 26
Year: 2019

Title: Aberrancies of brain network structures in patients with anosmia
Authors: B. Chen, J. Akshita, P. Han, D. Thaploo, H. H. Kitzler, T. Hummel
Journal: Brain Topography 33, 403โ€“411
Citations: 18
Year: 2020

Title: When the bone flap expands like bellows of accordion: feasibility study using novel technique of expansile (hinge) craniotomy for severe traumatic brain injury
Authors: T. Mishra, K. Kishore, M. Jayan, D. Thaploo, N. C. Shanbhag, D. I. Bhat, …
Journal: Neurology India 69 (4), 973โ€“978
Citations: 12
Year: 2021

Title: A novel technique for olfactory bulb measurements
Authors: A. Joshi, D. Thaploo, X. Yan, T. Herrmann, H. A. Khabour, T. Hummel
Journal: PLoS One 15 (12), e0243941
Citations: 8
Year: 2020

Title: Brachial plexus injury and resting-state fMRI: Need for consensus
Authors: D. Thaploo, D. I. Bhat, M. V. Kulkarni, B. I. Devi
Journal: Neurology India 67 (3), 679โ€“683
Citations: 7
Year: 2019

Title: Neural processing of odors with different well-being associationsโ€”findings from two consecutive neuroimaging studies
Authors: A. Joshi, H. Hornstein, D. Thaploo, V. Faria, J. Warr, T. Hummel
Journal: Brain Sciences 13 (4), 576
Citations: 6
Year: 2023

Title: Tractography indicates lateralized differences between trigeminal and olfactory pathways
Authors: D. Thaploo, A. Joshi, C. Georgiopoulos, J. Warr, T. Hummel
Journal: NeuroImage 261, 119518
Citations: 6
Year: 2022

Conclusion

In conclusion, Dr. Divesh Thaploo’s outstanding academic background, innovative research in olfactory neuroscience and neuroimaging, impactful publications, and international recognition make him highly suitable for the Best Researcher Award. He is a rising star with sustained contributions and clear potential for continued excellence in scientific research.