Zhenghui Luo | organic solar cells | Best Researcher Award

Assoc Prof Dr. Shenzhen University, China

Dr. Luo Zhenghui, born in October 1991 in Wuhan, Hubei Province, is an Associate Professor at Shenzhen University, specializing in organic optoelectronic functional materials. He completed his PhD in Organic Chemistry at Wuhan University under the supervision of Professor Yang Chuluo, with joint training at the Institute of Chemistry, Chinese Academy of Sciences. Dr. Luo has published over 100 SCI papers, with 26 recognized as ESI Highly Cited Papers. His research focuses on the design and synthesis of non-fullerene acceptor materials and organic photovoltaic devices. He has received multiple awards, including recognition as a Clarivate Analytics Highly Cited Scientist.

 

Professional Profiles:

Education:

PhD in Organic Optoelectronic Functional Materials, Wuhan UniversitySupervisor: Professor Yang ChuluoJoint Training: Institute of Chemistry, Chinese Academy of Sciences (Academician Li Yongfang)Research Direction: Design, synthesis, and photovoltaic device research of non-fullerene acceptor materials

Research Focus:

Organic photovoltaic materials and devicesPreparation and optimization of organic photovoltaic devicesDesign and synthesis of non-fullerene acceptor materials

Key Achievements:

Published over 100 SCI papers since May 2016.26 papers selected as ESI Highly Cited Papers and 26 as ESI Hot Topics.Total citations exceed 8,000 (H-index: 51 on Google Scholar).First author or corresponding author on 54 papers, including top journals like Joule, Advanced Materials, Angewandte Chemie International Edition, and Energy & Environmental Science.Awarded for outstanding research contributions, including the 2020 Cell Press Chinese Scientist Best Paper Award in Material Science and selection as a Clarivate Analytics Highly Cited Scientist for multiple years.

Awards:

Top 2% of the world’s top scientists in Environment, Energy, and Sustainability journals for three consecutive years (2021-2023).Second prize winner in Guangdong Province and Shenzhen City Natural Science Award in 2022.

Strengths for the Award

1. Exceptional Publication Record: Luo Zhenghui has published over 100 SCI papers since May 2016, with 26 being selected as ESI Highly Cited Papers and 26 as ESI Hot Topics. His research output demonstrates both quality and impact, with a Google Scholar H-index of 51 and over 8,000 citations. His work in high-impact journals such as Advanced Materials, Angewandte Chemie, Joule, and Nature Communications underscores his contributions to the field of organic optoelectronic functional materials.

2. Expertise in Organic Photovoltaic Materials: Luo’s research focuses on organic photovoltaic materials and devices, particularly the design, synthesis, and application of non-fullerene acceptor materials. His innovative work in this area has led to significant advancements, including the development of polymer solar cells with efficiencies exceeding 17%. His expertise in molecular design and device engineering is evident in his numerous high-impact publications.

3. Recognition and Awards: Luo has received several prestigious awards, including the Cell Press Chinese Scientist Best Paper Award (First Place in Material Science) and the Outstanding Paper Award from Science China Chemistry. His recognition as a Clarivate Analytics Highly Cited Scientist and inclusion in the top 2% of the world’s top scientists further solidifies his standing in the scientific community.

4. Collaborative and Interdisciplinary Research: Luo has successfully collaborated with leading researchers and institutions, including joint training with the Institute of Chemistry, Chinese Academy of Sciences, and research at the Hong Kong University of Science and Technology. His interdisciplinary approach has contributed to his success in advancing organic optoelectronics and photovoltaic research.

Areas for Improvement

1. Diversification of Research Focus: While Luo’s focus on organic photovoltaic materials has yielded significant results, diversifying his research portfolio could enhance his contributions to other emerging areas within organic optoelectronics. Expanding into related fields such as organic light-emitting diodes (OLEDs) or organic semiconductors could further strengthen his overall research impact.

2. Increased Industry Collaboration: To translate his research into practical applications, Luo could benefit from increased collaboration with industry partners. Engaging in technology transfer and commercialization efforts could amplify the societal impact of his research, particularly in the development and deployment of organic photovoltaic technologies.

3. Outreach and Mentorship: Luo could consider increasing his involvement in outreach and mentorship activities. Guiding the next generation of researchers and actively participating in scientific outreach could enhance his visibility and influence within the broader scientific community.

 

āœļøPublications Top Note :

Fine-tuning energy levels via asymmetric end groups – This paper reports on polymer solar cells achieving efficiencies over 17% through the fine-tuning of energy levels using asymmetric end groups. Published in Joule in 2020, it has been cited 367 times.

Improving open-circuit voltage by a chlorinated polymer donor – This study demonstrates how a chlorinated polymer donor can improve the efficiency of binary organic solar cells to over 17%. Published in Science China Chemistry in 2020, with 328 citations.

A layer-by-layer architecture for printable organic solar cells – This research addresses the challenge of module efficiency in organic solar cells by using a layer-by-layer architecture. It was published in Joule in 2020 and has 317 citations.

Precisely controlling the position of bromine on the end group – This work explores how the precise positioning of bromine on polymer acceptors can lead to solar cells with efficiencies over 15%. It was published in Advanced Materials in 2020 and has been cited 311 times.

Fine-tuning molecular packing and energy level through methyl substitution – This paper focuses on methyl substitution for fine-tuning molecular packing, leading to efficient nonfullerene polymer solar cells. Published in Advanced Materials in 2018, it has 292 citations.

Use of two structurally similar small molecular acceptors – The study shows how using two structurally similar acceptors can enable high-efficiency ternary organic solar cells. Published in Energy & Environmental Science in 2018, it has 280 citations.

Asymmetrical ladder-type donor-induced polar small molecule acceptor – This research promotes fill factors approaching 77% in high-performance nonfullerene polymer solar cells. Published in Advanced Materials in 2018, it has 273 citations.

16% efficiency all-polymer organic solar cells – The paper reports on achieving a 16% efficiency in all-polymer organic solar cells via a finely tuned morphology. Published in Joule in 2021, with 243 citations.

Simultaneous enhanced efficiency and thermal stability – This work demonstrates enhanced efficiency and thermal stability in organic solar cells using a polymer acceptor additive. Published in Nature Communications in 2020, it has 239 citations.

A nonfullerene acceptor with a 1000 nm absorption edge – This study discusses the development of a nonfullerene acceptor leading to improved efficiencies in organic solar cells. Published in Energy & Environmental Science in 2019, with 229 citations.

Conclusion

Luo Zhenghui is an outstanding candidate for the Best Researcher Award, with a proven track record of high-impact research, numerous accolades, and significant contributions to the field of organic optoelectronic functional materials. His expertise in organic photovoltaic materials, coupled with his collaborative and interdisciplinary approach, positions him as a leader in his field. While there is potential for further growth in diversifying his research focus and increasing industry collaboration, Luo’s achievements to date make him a highly deserving recipient of this prestigious award.

Dhanraj Shinde | Microbial fuel cells | Best Researcher Award

Dr. Dhanraj Shinde | Microbial fuel cells | Best Researcher Award

Dr. National Chemical Laboratory, Pune, Maharastra, India

Dr. Dhanraj B. Shinde, with over 15 years of research experience, is a Ramalingaswami fellow and Assistant Professor at the National Chemical Laboratory, India. He specializes in nanomaterials synthesis, proton conductive membranes, chemical vapor deposition, and energy storage devices. He has held postdoctoral positions at New Mexico State University, USA, and Monash University, Australia, contributing significantly to graphene production and microbial fuel cells. Dr. Shinde earned his Ph.D. in Physical and Materials Chemistry from the University of Pune, India. His numerous accolades include the Ramanujan Fellowship and the Australian Alumni Research Grant.

 

Professional Profiles:

EducationšŸŽ“

Ph.D. in Physical and Materials ChemistryNational Chemical Laboratory (NCL), University of Pune, India (2008 – 2013)Thesis: ā€œElectrochemical Synthesis and Functionalization of Carbon-based Nanomaterialsā€Supervisor: Dr. K. Vijayamohanan, IISER Tirupati, IndiašŸŽ“ M.Sc. in ChemistryYeshwant College, Department of Chemistry, Swami Ramanand Teerth Marathwada University Nanded, Maharashtra, India (May 2006)šŸŽ“ B.Sc. in ChemistryMahatma Gandhi College, Ahmedpur, Swami Ramanand Teerth Marathwada University, Nanded, Maharashtra, India (May 2004)

Fellowships and Awards

šŸ… Fellowships:

Senior Research Fellowship, CSIR, New Delhi (January 2010 to December 2012)Junior Research Fellowship, CSIR, New Delhi (January 2008 to December 2009)Ramanujan Fellowship, SERB (2021)Ramalingaswami Re-entry Fellowship, DBT (2021)

šŸ† Awards:

KRISHNAN AWARD for Best Published Research Paper in Physical Chemistry / Materials Science (2011 & 2013)Best Thesis Award ā€œKEERTHI SANGORAM MEMORIAL ENDOWMENT AWARDā€ (2012)Young Associate Award, Maharashtra Academy of Sciences (2019)Australian Alumni Research Grant (2022)

ObjectivešŸš€

Career Goal: Intend to build a career in a leading institution with committed and dedicated people, helping to explore my potential. Willing to work as a key player in a challenging and creative environment.

Research ExperiencešŸ”¬

15+ Years of Research Experience:Nanomaterials synthesisProton conductive membranesChemical vapor depositionRedox flow batteriesFuel cells and energy storage devices

Current PositionšŸ¢

National Chemical Laboratory, IndiaRamalingaswami Fellow and Assistant Professor, A-CSIR (May 2021 – Present)Project: High power density microbial fuel cells: Conversion of waste into electricity and chemicalsGrant: Australian Alumni research grant to develop cost-effective microbial fuel cells (2022)

Previous PositionsšŸŒ

New Mexico State University, USAPostdoctoral Research Associate (November 2016 – 2020)Large area single crystalline graphene production using atmospheric pressure chemical vapor depositionBreakthrough proton conductive membranes based on two-dimensional materials for microbial fuel cells and redox flow battery applicationsšŸŒ Monash University, AustraliaPostdoctoral Research Associate (December 2013 – 2016)High-quality graphene manufacturing and upscaling through flow chemistry approachesLarge area graphene oxide membranes for water desalination

Strengths for the Award:

Extensive Research Experience: Over 15 years of hands-on experience in advanced material synthesis and energy storage technologies.Innovative Contributions: Pioneering work in microbial fuel cells and cost-effective solutions for renewable energy.Proven Track Record: Multiple prestigious fellowships and awards showcasing a history of excellence and significant impact in the field.Strong Academic and Professional Background: Advanced degrees and notable positions in esteemed institutions worldwide.

Areas for Improvement:

Industry Collaboration: Increasing collaborations with industry partners to translate research findings into commercial applications.Funding Acquisition: Securing additional funding to expand research capabilities and explore new avenues.Public Outreach: Enhancing efforts to communicate scientific discoveries to the general public and policymakers to foster greater understanding and support.

Conclusion:

Dr. Dhanraj B. Shinde is a highly accomplished researcher with a formidable background in nanomaterials, fuel cells, and renewable energy technologies. His extensive experience, coupled with a proven track record of innovation and excellence, makes him a strong candidate for the Best Researcher Award. With continued focus on industry collaboration, funding acquisition, and public outreach, Dr. Shinde is well-positioned to drive significant advancements in sustainable energy solutions.

āœļøPublications Top Note :

Synergistic humidity-responsive mechanical motion and proton conductivity in a cationic covalent organic framework
Das, G., Shinde, D.B., Melepurakkal, A., El-Roz, M., Trabolsi, A.
ChemThis link is disabled.

Unique role of dimeric carbon precursors in graphene growth by chemical vapor deposition
Shinde, D.B., Chaturvedi, P., Vlassiouk, I.V., Smirnov, S.N.
Carbon Trends, 5, 100093

Exclusively Proton Conductive Membranes Based on Reduced Graphene Oxide Polymer Composites
Shinde, D.B., Vlassiouk, I.V., Talipov, M.R., Smirnov, S.N.
ACS Nano, 13(11), 13136ā€“13143

Development of CdZn(SSe)2 thin films by using simple aqueous chemical route: Air annealing
Jagadale, S.K., Shinde, D.B., Mane, R.M., Mane, R.K., Bhosale, P.N.
Materials Today: Proceedings, 4(2), 363ā€“368

Low temperature simple aqueous phase chemical synthesis and characterization of ZnO thin films
Shinde, D.B., Ghanwat, V.B., Khot, K.V., Mane, R.K., Bhosale, P.N.
Materials Today: Proceedings, 4(2), 119ā€“125

Fabrication of carbon nanorods and graphene nanoribbons from a metal-organic framework
Pachfule, P., Shinde, D., Majumder, M., Xu, Q.
Nature Chemistry, 8(7), 718ā€“724

Shear Assisted Electrochemical Exfoliation of Graphite to Graphene
Shinde, D.B., Brenker, J., Easton, C.D., Neild, A., Majumder, M.
Langmuir, 32(14), 3552ā€“3559

Large-area graphene-based nanofiltration membranes by shear alignment of discotic nematic liquid crystals of graphene oxide
Akbari, A., Sheath, P., Martin, S.T., Bhattacharyya, D., Majumder, M.
Nature Communications, 7, 10891

Electrochemical preparation of nitrogen-doped graphene quantum dots and their size-dependent electrocatalytic activity for oxygen reduction
Shinde, D.B., Dhavale, V.M., Kurungot, S., Pillai, V.K.
Bulletin of Materials Science, 38(2), 435ā€“442

Graphene nanoribbons as prospective field emitter
Khare, R., Shinde, D.B., Bansode, S., Pillai, V.K., Late, D.J.
Applied Physics Letters, 106(2), 023111

Dr. Jie Jian | Fuctional materials | Best Researcher Award

Dr. Jie Jian | Fuctional materials | Best Researcher Award

Dr. Jie Jian , Northwestern Polytechnical University, China

Dr. Jie Jian is a distinguished PostDoc in Materials Science at Northwestern Polytechnical University, specializing in photoelectrodes and photocatalysts. With expertise in nanomaterial synthesis and advanced film processing technologies, Dr. Jian has significantly contributed to the field through innovative research and optimization strategies. His academic journey includes a PhD and M.S. from NPU, focusing on BiVO4-nanocrystals and SiC ceramic composites, respectively, and a B.S. from Chongqing University. Dr. Jian has also gained industry experience as an engineer at Samsung Semiconductor. His work is characterized by a profound understanding of material characterization and software proficiency.

 

Professional Profiles:

Google Scholar

 

šŸŒŸ Technical-Scientific Skills šŸŒŸ

Mastering Preparation, Testing, and Characterization of photoelectrodes (photoanodes and photocathodes) and photocatalysts, proposing optimization strategies based on photoelectrochemical principles.Expert in Synthesis of Nanomaterials using pulsed laser irradiation in liquid and wet-chemical methods, and proficient in the design, synthesis, and functional exploration of porous materials.Film Processing Technologies: Skilled in spin coating, dip coating, chemical baths, electrodeposition, magnetron sputtering, and ALD.Material Characterization: Proficient in TEM, SEM, AFM, Raman, BET, UV-vis, XPS, XRD, FTIR.Software Proficiency: Photoshop, 3D-Max, Origin, Endnote, VESTA, Gatan, CAD, ChemDraw, Athena.

šŸ“š Academic Education and Career šŸ“š

03/2022-present
PostDoc in Materials Science, Northwestern Polytechnical University (NPU)
Supervisor: Prof. Hongqiang Wang
Project: In-situ Embedding Nanocrystals/Clusters in Porous Materials for Efficient Photo(electro)catalysis09/2016-03/2023
PhD in Materials Science, Northwestern Polytechnical University (NPU)
Supervisor: Prof. Hongqiang Wang
Thesis Title: Laser Derived Films of BiVO4-Nanocrystals for Efficient Photoelectrochemical Water Splitting04/2015-08/2016
Engineer, Samsung (China) Semiconductor Co., Ltd., Xiā€™an, China (SCS)
Task: Process controlling and equipment monitoring during chemical vapor deposition.09/2012-03/2015
M.S. in Materials Science, Northwestern Polytechnical University (NPU)
Supervisor: Prof. Laifei Cheng
Thesis Title: Strengthening and Toughening of Laminated (SiCp+SiCw)/SiC Ceramic Composites09/2008-07/2012
B.S. in Materials Science and Engineering, Chongqing University (CQU)
Supervisor: Prof. Baifeng Luan
Thesis Title: Study on deformation structure and texture of pure zirconium with large grain size rolled at liquid nitrogen temperature
GPA: 3.55/4
Ranking: 3/72

šŸ“–Ā Publications Top Note :

Embedding Laser-Generated Nanocrystals in BiVO4 Photoanode for Efficient Photoelectrochemical Water Splitting
J Jian, Y Xu, X Yang, W Liu, M Fu, H Yu, F Xu, F Feng, L Jia, D Friedrich, …
Nature Communications 10 (1), 2609 (2019)
Citations: 160

Recent Advances in Rational Engineering of Multinary Semiconductors for Photoelectrochemical Hydrogen Generation
J Jian, G Jiang, R van de Krol, B Wei, H Wang
Nano Energy 51, 457-480 (2018)
Citations: 160

Black BiVO4: Size Tailored Synthesis, Rich Oxygen Vacancies, and Sodium Storage Performance
X Xu, Y Xu, F Xu, G Jiang, J Jian, H Yu, E Zhang, D Shchukin, S Kaskel, …
Journal of Materials Chemistry A 8 (4), 1636-1645 (2020)
Citations: 67

Porous CuBi2O4 Photocathodes with Rationally Engineered Morphology and Composition Towards High-Efficiency Photoelectrochemical Performance
Y Xu, J Jian, F Li, W Liu, L Jia, H Wang
Journal of Materials Chemistry A 7 (38), 21997-22004 (2019)
Citations: 61

Ordered Porous BiVO4 Based Gas Sensors with High Selectivity and Fast-Response Towards H2S
C Li, X Qiao, J Jian, F Feng, H Wang, L Jia
Chemical Engineering Journal 375, 121924 (2019)
Citations: 59

Dr. Zahraa Mohammed | Information Security | Women Researcher Award

Dr. Zahraa Mohammed | Information Security | Women Researcher Award

Dr. Zahraa Mohammed, Babylon university, Iraq

Dr. Zahraa Mohammed is academic and researcher in the field of renewable energy, holds a PhD in Bio systems Engineering from Kangwon National University, South Korea. His academic journey has been marked by a profound dedication to advancing solar energy technologies, specifically in solar thermal harvesting and its integration into agricultural and architectural applications.

Professional Profiles:

Scopus

šŸŽ“ EDUCATION HISTORY šŸŽ“

Bachelor of Science in Computer Science, 2006Master of Computer Science, 2016Doctoral Student

šŸ’¼ WORK EXPERIENCE šŸ’¼

Teacher at University of Babylon, Iraq šŸ“š

šŸ” RELEVANT SKILLS šŸ”

Fluency in English

šŸ“–Ā Publications Top Note :

Article: Advancing Cloud Image Security via AES Algorithm Enhancement Techniques

Authors: Mohammed, Z.A.; Gheni, H.Q.; Hussein, Z.J.; Al-Qurabat, A.K.M.

Published in: Engineering, Technology and Applied Science Research, 2024, 14(1), pp. 12694ā€“12701

Abstract: [Abstract not available]

Related Documents: [Links disabled]

Conference Paper: Routing Information Protocol (RIP) for Wired Network

Authors: Hussein, Z.J.; Mohammed, Z.A.; Al-Qurabat, A.K.M.; Gheni, H.Q.

Published in: AIP Conference Proceedings, 2023, 2787(1), 050025

Abstract: [Abstract not available]

Related Documents: [Links disabled]

Conference Paper: Lightweight Cryptography Concepts and Algorithms: A Survey

Authors: Mohammed, Z.A.; Hussein, K.A.

Published in: 2nd International Conference on Advanced Computer Applications, ACA 2023, 2023, pp. 180ā€“186

Abstract: [Abstract not available]

Related Documents: [Links disabled]

Article: Data Traffic Management Based on Compression and MDL Techniques for Smart Agriculture in IoT

Authors: Al-Qurabat, A.K.M.; Mohammed, Z.A.; Hussein, Z.J.

Published in: Wireless Personal Communications, 2021, 120(3), pp. 2227ā€“2258

Abstract: [Abstract not available]

Related Documents: [Links disabled]

Conference Paper: Improve HR Decision-Making Based on Data Mart and OLAP

Authors: Hamoud, A.K.; Ulkareem, M.A.; Hussain, H.N.; Mohammed, Z.A.; Salih, G.M.

Published in: Journal of Physics: Conference Series, 2020, 1530(1), 012058

Abstract: [Abstract not available]

Related Documents: [Links disabled]

Prof. Vladislav Sadykov | functional nanomaterials | Best Researcher Award

Prof. Vladislav Sadykov | functional nanomaterials | Best Researcher Award

Prof. Vladislav Sadykov, Boreskov Institute of catalysis, Russia

Prof. Vladislav Sadykov is academic and researcher in the field of renewable energy, holds a PhD in Bio systems Engineering from Kangwon National University, South Korea. His academic journey has been marked by a profound dedication to advancing solar energy technologies, specifically in solar thermal harvesting and its integration into agricultural and architectural applications.

 

Professional Profiles:

Scopus

Orcid

Education šŸŽ“

MS, 1973: Novosibirsk State University, RussiaPhD, 1979: Boreskov Institute of Catalysis (BIC), NovosibirskDoctor of Sciences, 1999: Boreskov Institute of Catalysis, NovosibirskProfessor, 1999: Novosibirsk State University, Novosibirsk

Career/Employment šŸ¢

Boreskov Institute of Catalysis:Research Fellow, 1973Junior Research Scientist, 1975Senior Research Scientist, 1985Head of Laboratory, 1990-2021; Chief Research Scientist, up to dateNovosibirsk State University:Professor, 1999-up to date; Chair of Physical Chemistry and Solid State Chemistry

Current Research Interests šŸ”¬

Heterogeneous Catalysis: Red-ox processes for energy production (including solid oxide fuel cells) and environmental protectionCatalytic Processes: Short contact times for syngas and hydrogen production from biofuelsNanophase and Nanocomposite Materials: Advanced technologies in complex oxides, pillared clays, framework silicates, nanocomposites with mixed ionic-electronic conductivity synthesisSolid State Ionics: Oxygen and hydrogen separation membranes

International Collaboration šŸŒ

BIC Team Leader in FP6 Projects:SOFC 600 SES6-2006-020089 ā€œDemonstration of SOFC stack technology for operation at 600Ā°Cā€STRP 033410 MatSILC ā€œNovel Materials for Silicate-Based Fuel Cellsā€FP7 Project OCMOL228953: ā€œOxidative Coupling of Methane followed by Oligomerization to Liquidsā€BIOGO for Production, THEBARCODE: NATO Science for Peace Project ā€œSolid Oxide Fuel Cells for Energy Securityā€International Science and Technology Center (ISTC) Projects:2529 ā€œDevelopment of an efficient, inexpensive nanocomposite catalyst and elaboration of a flexible technology to produce syn-gas for fuel cellsā€3234 ā€œDevelopment of high-performance oxygen-conducting membranes and compact pure syngas generators on their baseā€Russian-French Network of Laboratories: ā€œFundamental bases of design of nanocomposite catalysts for transformation of biofuels into syngas and hydrogenā€ (Partner Lab. of Materials, Univ. Strasbourg, CNRS, Prof. A.ā€“C. Roger), 2011-2014INTAS Projects: Collaborations with Prof. J. Ross (Ireland), Prof. E. Kemnitz (Germany), Prof. S. Neophytides (Greece), et al.

Honours, Awards, Fellowships, Membership of Professional Societies šŸ…

Award of the Russian Federation Government in Science and Technology, 1999: Development and Industrial Application of the Two-Stage Technology of Ammonia Oxidation under Pressure in the Diluted Nitric Acid ProductionBalandin Award of the Russian Academy of Sciences, 2007: Series of works ā€œThe role of defect structure of catalysts of red-ox reactionsā€Koptyug Award, 2012: NAN Belarus-Siberian Branch of the Russian Academy of Sciences for the series of works ā€œScientific bases of design of composite and nanostructured materials for the hydrogen energy fieldā€Editorial Board Member:Applied Catalysis APhysics of Combustion and Flame (Russia)Open Chemistry (de Gruyter Open)Energies (MDPI)Membranes (MDPI)Professional Society Membership:American Chemical SocietyMaterials Research Society (USA)Mendeleev Chemical Society (Russia)

Title: Approaches to the design of efficient and stable catalysts for biofuel reforming into syngas: doping the mesoporous MgAl2O4 support with transition metal cations

Journal: Dalton Transactions

Year: 2023

Contributors: Vladislav A. Sadykov, Nikita F. Eremeev, Ekaterina Sadovskaya, Julia E. Fedorova, Marina V. Arapova, Ludmilla N. Bobrova, Arkady V. Ishchenko, Tamara A. Krieger, Maksim S. Melgunov, Tatyana S. Glazneva, et al.

DOI: 10.1039/D3DT00830D

Title: Design of Mixed Ionic-Electronic Materials for Permselective Membranes and Solid Oxide Fuel Cells Based on Their Oxygen and Hydrogen Mobility

Journal: Membranes

Year: 2023-07-27

Contributors: Vladislav Sadykov, Elena Pikalova, Ekaterina Sadovskaya, Anna Shlyakhtina, Elena Filonova, Nikita Eremeev

DOI: 10.3390/membranes13080698

Title: Methane Dry Reforming Catalysts Based on Pr-Doped Ceriaā€“Zirconia Synthesized in Supercritical Propanol

Journal: Energies

Year: 2023-06-15

Contributors: Marina Arapova, Ekaterina Smal, Yuliya Bespalko, Konstantin Valeev, Valeria Fedorova, Amir Hassan, Olga Bulavchenko, Vladislav Sadykov, Mikhail Simonov

DOI: 10.3390/en16124729

Title: Synthesis and Oxygen Mobility of Bismuth Cerates and Titanates with Pyrochlore Structure

Journal: Membranes

Year: 2023-06-13

Contributors: Yuliya Bespalko, Nikita Eremeev, Ekaterina Sadovskaya, Tamara Krieger, Olga Bulavchenko, Evgenii Suprun, Mikhail Mikhailenko, Mikhail Korobeynikov, Vladislav Sadykov

DOI: 10.3390/membranes13060598

Title: Dry Reforming of Methane over 5%Ni/Ce1-xTixO2 Catalysts Obtained via Synthesis in Supercritical Isopropanol

Journal: International Journal of Molecular Sciences

Year: 2023-06-02

Contributors: Ekaterina Smal, Yulia Bespalko, Marina Arapova, Valeria Fedorova, Konstantin Valeev, Nikita Eremeev, Ekaterina Sadovskaya, Tamara Krieger, Tatiana Glazneva, Vladislav Sadykov, et al.

DOI: 10.3390/ijms24119680

Title: Ethanol Dry Reforming over Bimetallic Niā€Containing Catalysts Based on Ceriaā€Zirconia for Hydrogen Production

Journal: ChemCatChem

Year: 2023-05-19

Contributors: Valeria Fedorova, Yulia Bespalko, Marina Arapova, Ekaterina Smal, Konstantin Valeev, Igor Prosvirin, Vladislav Sadykov, Ksenia Parkhomenko, Anneā€CĆ©cile Roger, Mikhail Simonov

DOI: 10.1002/cctc.202201491

Title: Methane Dry Reforming Catalysts Based on Pr-doped Ceria-Zirconia Synthesized in Supercritical Propanol

Journal: Preprint

Year: 2023-05-09

Contributors: Marina Arapova, Ekaterina Smal, Yuliya Bespalko, Konstantin Valeev, Valeria Fedorova, Amir Hassan, Olga Bulavchenko, Vladislav Sadykov, Mikhail Simonov

DOI: 10.20944/preprints202305.0617.v1

Title: Advances in Hydrogen and Syngas Generation

Journal: Energies

Year: 2023-03-29

Contributors: Vladislav Sadykov

DOI: 10.3390/en16073127

Title: Structural and transport properties of Nd tungstates and their composites with Ni0.5Cu0.5O obtained by mechanical activation

Journal: Dalton Transactions

Year: 2022

Contributors: Nikita F. Eremeev, Yuliya N. Bespalko, Ekaterina M. Sadovskaya, Pavel I. Skriabin, Tamara A. Krieger, Arcady V. Ishchenko, Vladislav A. Sadykov

DOI: 10.1039/D2DT00498D

Title: Ni and Niā€“Co Catalysts Based on Mixed Ceā€“Zr Oxides Synthesized in Isopropanol Medium for Dry Reforming of Methane

Journal: Russian Journal of Physical Chemistry B

Year: 2022-12

Contributors: Yu. N. Bespalko, V. E. Fedorova, E. A. Smal, M. V. Arapova, K. R. Valeev, T. A. Krieger, A. V. Ishchenko, V. A. Sadykov, M. N. Simonov

DOI: 10.1134/S1990793122080048

Title: Efficient Catalysts of Ethanol Steam Reforming Based on Perovskite-Fluorite Nanocomposites with Supported Ni: Effect of the Synthesis Methods on the Activity and Stability

Journal: Catalysts

Year: 2022-10

Contributors: Marina Arapova, Symbat Naurzkulova, Tamara Krieger, Vladimir Rogov, Vladislav Sadykov

DOI: 10.3390/catal12101151

Dr. Yong Wang | computational Award | Best Researcher Award

Dr. Yong Wang | computational Award | Best Researcher Award

Dr. Yong Wang, Zhejiang University, China

Dr. Yong Wang is academic and researcher in the field of renewable energy, holds a PhD in Bio systems Engineering from Kangwon National University, South Korea. His academic journey has been marked by a profound dedication to advancing solar energy technologies, specifically in solar thermal harvesting and its integration into agricultural and architectural applications.

Professional Profiles:

Google scholar

orcid

šŸŽ“ Teaching and Tutoring

Jury for International Biosensor Competition: SensUs 2023 (2023)Supervisor for TruSense, Zhejiang University (2021-)Teacher for Ingenious Synthetic Biology, Zhejiang University (2022-)Teaching Assistant for Advanced Protein Science 2 – Protein Structure Determination (graduate course), University of Copenhagen (2020, 2019)Teaching Assistant for Advanced Protein Science (graduate course), University of Copenhagen (2015)Tutor for Postdoc, PhD, MSc, and BSc students.

šŸ“ Editorial Roles

Academic Editor for PLoS One (2023-)Associate Editor for Frontiers in Molecular Biosciences (2021-)Editorial Board Member of Peer J (2023-)Ad Hoc Young Editorial Board Member of Journal of Molecular Cell Biology (JMCB) (2020-)Second Youth Editorial Board Member of Asian Journal of Pharmaceutical Sciences (2023-)

šŸ” Reviewer

Journal Reviewer for prestigious journals.Grant Reviewer for the Dutch Research Council (NWO) Computational Grants.

šŸ‘„ Memberships

Member of the PLUMED ConsortiumMember of the American Society for Biochemistry and Molecular BiologyMember of Chinese Chemical Society

AWARDS & GRANTSšŸ†

Recognition for contributions:Zhejiang Provincial National Science Foundation (No. XXX) (300 K Ā„) 2024-2026National Science Foundation of China (No. 32371300) (500 K Ā„) 2024-2027Start-up funding of Zhejiang University (4.0 M Ā„) 2021-2027National Key R & D Program of China (No. 2021YFF1200404) (4.55 M Ā„) 2021-2024Fundamental Research Funds for the Central Universities of China (No. K20220228) (900 K Ā„) 2022-2024HPC-Europa3 Transnational Access program for visiting Max Planck Institute for Biophysical Chemistry Spring of 2020EMBO Short-term Fellowship for visiting Prof. Michele Parrinello lab at ETH Zurich, Switzerland Spring of 2016The PhD Scholarship at the Department of Biology, University of Copenhagen (2013-2016)

Citations: 1547

h-index: 23

i10-index: 31

And if we consider the second set:

Citations: 1074

h-index: 21

i10-index: 30

šŸ“– PublicationsĀ  Top Note :

A Computational and Chemical Design Strategy for Manipulating Glycan-Protein Recognition

Q Zhu, D Geng, J Li, J Zhang, H Sun, Z Fan, J He, N Hao, Y Tian, L Wen, …

Advanced Science, 2024

Diverse roles of the metal binding domains and transport mechanism of copper transporting P-type ATPases

Z Guo, F OrƤdd, V BĆ„genholm, C GrĆønberg, JF Ma, P Ott, Y Wang, …

Nature Communications, 2609, 2024

Dissecting the mechanism of atlastin-mediated homotypic membrane fusion at the single-molecule level

L Shi, C Yang, M Zhang, K Li, K Wang, L Jiao, R Liu, Y Wang, M Li, …

Nature Communications, 2488, 2024

Euglenaā€™s atypical respiratory chain adapts to the discoidal cristae and flexible metabolism

Z He, M Wu, H Tian, L Wang, Y Hu, F Han, J Zhou, Y Wang, L Zhou

Nature Communications, 1628, 2024

Structures and ion transport mechanisms of plant high-affinity potassium transporters

J Wang, Y Luo, F Ye, ZJ Ding, SJ Zheng, S Qiao, Y Wang, J Guo, W Yang, …

Molecular Plant, 2024

Structural basis for sugar perception by Drosophila gustatory receptors

D Ma, M Hu, X Yang, Q Liu, F Ye, W Cai, Y Wang, X Xu, S Chang, R Wang, …

Science, eadj2609, 2024

PAFAH2 suppresses synchronized ferroptosis to ameliorate acute kidney injury

Q Zhang, T Sun, F Yu, W Liu, J Gao, J Chen, H Zheng, J Liu, C Miao, …

Nature Chemical Biology, 1-12, 2024

Structure and mechanism of Zorya anti-phage defense system

H Hu, TCD Hughes, PF Popp, A Roa-Eguiara, FJO Martin, N Rutbeek, …

bioRxiv, 1, 2024

The effect of linker conformation on performance and stability of a two-domain lytic polysaccharide monooxygenase

Z Forsberg, AA Stepnov, G Tesei, Y Wang, E Buchinger, SK Kristiansen, …

Journal of Biological Chemistry, 299 (11), 2023

Ex vivo structures from spinach leaves

J Wang, NT Johansen, LF Gamon, Z Zhao, Z Guo, Y Wang, AT Fuglsang, …

biorxiv, 2023

Dr. saeideh salehi | nanocomposites Award | Best Researcher Award

Dr. saeideh salehi | nanocomposites Award | Best Researcher Award

Dr. saeideh salehi , Najafabad Branch, Islamic Azad University, Najafabad, Iran

Dr. saeideh salehi is academic and researcher in the field of renewable energy, holds a PhD in Bio systems Engineering from Kangwon National University, South Korea. His academic journey has been marked by a profound dedication to advancing solar energy technologies, specifically in solar thermal harvesting and its integration into agricultural and architectural applications.

Professional Profiles:

scopus

šŸŽ“ Education

Ph.D. in Materials Engineering – BiomaterialsIslamic Azad University Najafabad Branch, Najafabad, IranThesis Title: “Fabrication and Characterization of PLA-PEG-NANOBridigite Composite Scaffold Coated with Chitosan for Use in Tissue Engineering.”2017 – PresentM.Sc. in Materials Engineering ā€“ Materials CharacterizationUniversity of Shahrekord, Shahr-e Kord, Iran Thesis Topic: “Fabrication and coating of titanium foam scaffolds for targeted drug delivery.” 2015 – 2017B.Sc. in Materials Engineering – Ceramic NaghsheJahan University, Isfahan, Iran Final Project Title: “Investigation of the process of eggshell membranes containing oxide ceramics”

šŸ“œ Certifications and Workshops

BioinformaticsDesign and manufacture of three-dimensional printers (3D Printer)Biotechnology internshipMolecular DockingAdvanced Cell CultureBiom Preliminary Molecular Diagnostic LabMedical Nano-materialBasic Applied MicrobiologySynthesis of metal and silica nanoparticlesImage JQualitative Analysis of XRDWork with Laboratory AnimalsC++CATIARed Crescent SocietyCoaching (TTC) in the field of specialized languageFinal Examination Certificate (ADVANCED)Preliminary Molecular Diagnostic LabParticipation in a training program

šŸ† Honors and Awards

Selected for the final stage in the fifth best idea festival of young thinkers and scientists.Cover of the Journal of Applied Polymers Science, Volume 140, Issue 22Selected scientific ideal in the 6th Young Scientist Festival.

šŸ”¬ Research Project

Preparation and evaluation of double-layer wound dressing containing growth factor IGF-1 and zinc oxide nanoparticles.Preparation and evaluation of three-layer sponge-nanofiber aloe vera biomaterial containing IGF1 growth factor and multi-walled carbon nanotubes for skin tissue engineering.

šŸ” Research Interests

BiomedicalBiomaterialMusculoskeletalOccupational ergonomicDrug DeliveryWound dressing

šŸ‘©ā€šŸ« Experience

Laboratory Assistant at University of Shahrekord, teaching theoretical and practical courses.English InstructorInternships at Farabi Pharmacy and Isfahan Tile FactoryTranslator at Goldasht Agriculture and Livestock Company

šŸ“‘ Projects

Investigation of eggshell membranes containing oxide ceramicsFabrication and coating of titanium foam scaffolds for drug deliveryFabrication and characterization of chitosan-coated PLA-PEG-nano Bredigite composite scaffolds for tissue engineering and drug delivery systemsCo-delivery of doxorubicin and green synthesized silver nanoparticles by Mesoporous silica nanoparticles as antiproliferative complex against breast and cervical cancer cells

šŸ‘„ Memberships

Official member of Derma heal core in Isfahan scientific research

šŸ› ļø Skills

ICDLC++ImageJEndnoteGraphPad Prism 8ChemDoodleCATIAXPERT

šŸ—£ļø Language Competence

Persian (Native)English (Fluent)

šŸ“ŠĀ Citation Metrics (Google Scholar):

Citations by: All ā€“ 188, Since 2019 ā€“ 187
h-index: All ā€“ 9, Since 2018 ā€“ 9
i10 index: All ā€“ 9, Since 2018 ā€“9

 

šŸ“– PublicationsĀ  Top Note :

Coaxial electrospun angiogenic nanofiber wound dressing containing advanced platelet-rich fibrin

Authors: M Tavakoli, M Mirhaj, S Salehi, J Varshosaz, S Labbaf, A Golshirazi

Journal: International Journal of Biological Macromolecules

Volume: 222

Pages: 1605-1618

Year: 2022

Citations: 28

Preparation of a biomimetic bi-layer chitosan wound dressing composed of A-PRF/sponge layer and L-arginine/nanofiber

Authors: M Mirhaj, M Tavakoli, J Varshosaz, S Labbaf, S Salehi, A Talebi

Journal: Carbohydrate Polymers

Volume: 292

Pages: 119648

Year: 2022

Citations: 28

Platelet-rich fibrin-containing nanofibrous dressing for wound healing application: Fabrication, characterization and biological evaluations

Authors: M Mirhaj, M Tavakoli, J Varshosaz, S Labbaf, F Jafarpour, P Ahmaditabar

Journal: Biomaterials Advances

Volume: 134

Pages: 112541

Year: 2022

Citations: 25

Fabrication and evaluation of Cs/PVP sponge containing platelet-rich fibrin as a wound healing accelerator: An in vitro and in vivo study

Authors: M Tavakoli, M Mirhaj, S Labbaf, J Varshosaz, S Taymori, F Jafarpour

Journal: International Journal of Biological Macromolecules

Volume: 204

Pages: 245-257

Year: 2022

Citations: 24

PDGF and VEGF-releasing bi-layer wound dressing made of sodium tripolyphosphate crosslinked gelatin-sponge layer and a carrageenan nanofiber layer

Authors: M Alizadeh, S Salehi, M Tavakoli, M Mirhaj, J Varshosaz, N Kazemi

Journal: International Journal of Biological Macromolecules

Volume: 233

Pages: 123491

Year: 2023

Citations: 18

Mr. Bekbolat Tashev | Functional Materials Award | Best Researcher Award

Mr. Bekbolat Tashev | Functional Materials Award | Best Researcher Award

Mr. Bekbolat Tashev, Kazakh National Pedagogical University named after Abay, Kazakhstan

Mr. Bekbolat Tashevis academic and researcher in the field of renewable energy, holds a PhD in Bio systems Engineering from Kangwon National University, South Korea. His academic journey has been marked by a profound dedication to advancing solar energy technologies, specifically in solar thermal harvesting and its integration into agricultural and architectural applications.

Professional Profiles:

scopus

EducationšŸŽ“

2005 – 2009: PhD in Physics, Al-Farabi Kazakh National University, Almaty, Kazakhstan2003 – 2005: Master’s Degree, Al-Farabi Kazakh National University, Almaty, Kazakhstan1998 – 2003: Bachelor’s Degree, Al-Farabi Kazakh National University, Almaty, Kazakhstan

Subject Expertise:

PhysicsPhysics of PlasmasHigh Energy and Density PhysicsBeam Injection Tokomak PlasmasPhysics Teaching Methodology in High School

Work Experience:

2020 – Present: Acting Associate Professor, Abai Kazakh National Pedagogical University2018 – 2020: Dean of the Faculty of Physics and Mathematics, Kazakh National Womenā€™s Teacher Training University2012 – 2018: Acting Associate Professor, Al-Farabi Kazakh National University2012: Deputy Executive Secretary, Admissions Committee, Al-Farabi Kazakh National University2009 – 2011: Senior Lecturer, Al-Farabi Kazakh National University2005 – 2006: Responsible for Electronic Voting, Turksib District, Central Election Commission of Almaty City

Membership in Professional Organizations:

From 2019: Member of the Dissertation Council on Physics, Abai Kazakh National Pedagogical University

Languages:

Kazakh: Native Speaker (Speaking: 5, Reading: 5, Writing: 5)English: Reasonably fluent reading (4); fair speaking and writing (3)Russian: Excellent reading (5); excellent speaking and writing (5)

šŸš€ Research Focus & Contributions

Dr. [Your Name] is a distinguished physicist with a focus on plasma physics, high energy, and density physics. With expertise in beam injection tokamak plasmas, their research contributions have significantly advanced the understanding of ion slowing down phenomena in various plasma environments. Their extensive publication record showcases a deep commitment to academic excellence and innovation in the field of physics.

šŸŽÆ Teaching Philosophy

As an educator, Dr. [Your Name] is dedicated to fostering a dynamic and engaging learning environment. Their expertise in physics teaching methodology equips them to inspire the next generation of scientists and innovators. Through hands-on experimentation and interactive teaching techniques, they strive to cultivate a passion for physics among students and empower them to succeed in their academic pursuits.

šŸŒŸ Leadership & Administrative Experience

With a wealth of experience in academic leadership roles, including dean and senior lecturer positions, Dr. [Your Name] has demonstrated exceptional organizational and managerial skills. Their leadership has been instrumental in shaping the academic landscape of various institutions, driving innovation, and fostering interdisciplinary collaboration.

šŸŒ Multilingual Communication

Fluent in Kazakh, English, and Russian, Dr. [Your Name] possesses strong communication skills that enable effective collaboration and knowledge dissemination across diverse linguistic and cultural contexts.

šŸ“š Membership & Academic Service

As a member of the dissertation council on physics, Dr. [Your Name] actively contributes to the advancement of academic scholarship and mentorship within their field. Their dedication to academic service underscores a commitment to excellence in research and education.

šŸŒŸ Overall Contribution

Dr. [Your Name]’s multidimensional expertise, combined with a passion for teaching, research, and academic leadership, makes them a valued asset to the academic community. Their innovative contributions and unwavering commitment to advancing the frontiers of physics are testament to their profound impact on the field. 

šŸ“ŠĀ Citation Metrics (Google Scholar):

Citations by: All ā€“ 28, Since 2019 ā€“ 8
h-index: All ā€“ 3, Since 2018 ā€“ 2
i10 index: All ā€“ 1, Since 2018 ā€“0

 

šŸ“– PublicationsĀ  Top Note :

“Low velocity ion stopping in binary ionic mixtures”
Authors: B. Tashev, F. Baimbetov, C. Deutsch, P. Fromy
Journal: Physics of Plasmas 15 (10), 12 (2008)

“Multiple scattering in electron fluid and energy loss in multi-ionic targets”
Authors: C. Deutsch, N.A. Tahir, M. Barriga-Carrasco, V. Ceban, P. Fromy, D. Gilles, …
Journal: Nuclear Instruments and Methods in Physics Research Section A: Accelerators … 9, (2014)

“Low velocity ion slowing down in a de-mixing binary ionic mixture”
Authors: C. Deutsch, D. Leger, B. Tashev
Journal: Laser and Particle Beams 29 (1), 121-124 (2011)

“Low-velocity ion slowing-down in strongly asymmetric and binary ionic mixtures”
Authors: P. Fromy, B. Tashev, C. Deutsch
Journal: Europhysics Letters 92 (1), 15002 (2010)

“Very low velocity ion slowing down in binary ionic mixtures: Charge-and mass-asymmetry effects”
Authors: P. Fromy, B. Tashev, C. Deutsch
Journal: Physical Review Special Topics-Accelerators and Beams 13 (10), 101302 (2010)

“Correlated ion stopping in dense plasmas with a temperatureā€dependent plasmon pole approximation”
Authors: Z. Zakirova, B. Tashev, C. Deutsch
Journal: Contributions to Plasma Physics, e202300159 (2024)

“Low Ion Velocity Slowing Down in a Demixing Binary Ionic Mixture”
Authors: C. Deutsch, D. Leger, B. Tashev, Demixion1 Collaboration
Journal: APS Division of Plasma Physics Meeting Abstracts 53, YP9. 053 (2011)

“Low Velocity Ion Stopping in Binary Ionic Mixtures”
Authors: C. Deutsch, V. Ceban, P. Fromy, B. Tashev, Livsd1 Collaboration, …
Journal: APS Division of Plasma Physics Meeting Abstracts 53, YP9. 054 (2011)

“Very Low velocity Ion Slowing Down in Binary Ionic Mixtures”
Authors: P. Fromy, B. Tashev, C. Deutsch
Journal: APS Division of Plasma Physics Meeting Abstracts 52, UP9. 152 (2010)

“Low Ion Velocity Slowing Down in a Demixing Binary Ionic Mixture”
Authors: C. Deutsch, D. Leger, B. Tashev
Journal: APS Division of Plasma Physics Meeting Abstracts 52, XP9. 022 (2010)

“Publisherā€™s Note: Very low velocity ion slowing down in binary ionic mixtures: Charge-and mass-asymmetry effects”
Authors: P. Fromy, B. Tashev, C. Deutsch
Journal: Physical Review Special Topics-Accelerators and Beams 13 (10), 109901 (2010)

“Low Velocity Ion Stopping in Dense and Multicomponent Plasmas”
Authors: B. Tashev, C. Deutsch, P. Fromy
Journal: APS Division of Plasma Physics Meeting Abstracts 51, BP8. 064 (2009)

“Low-velocity ion slowing down in binary ionic mixtures”
Authors: B. Tashev, F. Baimbetov, C. Deutsch, P. Fromy
Journal: Nuclear Instruments and Methods in Physics Research Section A: Accelerators … (2009)

“Low Velocity Proton Stopping in Negative Hydrogen-Proton Mixtures”
Authors: C. Deutsch, M. Bacal, B. Tashev
Journal: APS Division of Plasma Physics Meeting Abstracts 50, YP6. 040 (2008)

“Low Velocity Ion Stopping in Dense and Multicomponent Plasmas”
Authors: B. Tashev, C. Deutsch, P. Fromy
Journal: APS Division of Plasma Physics Meeting Abstracts 50, UP6. 111 (2008)

“Low velocity ion stopping in multicomponent plasmas for WDM production”
Authors: B. Tashev, C. Deutsch
Journal: APS Division of Plasma Physics Meeting Abstracts 49, NP8. 047 (2007)

 

 

Assist Prof Dr. Hitesh Kumar Sharma | organic pollutants Award | Best Researcher Award

Assist Prof Dr. Hitesh Kumar Sharma |organic pollutants Award | Best Researcher Award

Assist Prof Dr. Hitesh Kumar Sharma, Meerut Institute of Technology, India

Dr. Addisu Frinjo Emma is academic and researcher in the field of renewable energy, holds a PhD in Bio systems Engineering from Kangwon National University, South Korea. His academic journey has been marked by a profound dedication to advancing solar energy technologies, specifically in solar thermal harvesting and its integration into agricultural and architectural applications.

 

Professional Profiles:

šŸŽ“ Seeking a Challenging Role in Scientific Analysis and Education

Scientific progress is pivotal for the advancement of human civilization. As an experienced educationist with a passion for scientific research, I am eager to contribute my skills and knowledge to an esteemed organization or educational institute committed to fostering scientific development. My journey in academia has equipped me with a diverse set of qualifications and experiences, highlighted below:

šŸ”¬ Educational Qualification

Ph.D. in Physics (2021) – Chaudhary Charan Singh University, Meerut, IndiaTitle: “Synthesis and Characterization of CNT-TiO2 Nanocomposites For Photocatalytic Applications”CSIR-UGC NET (2012)Master of Science in Physics (2012) – Chaudhary Charan Singh University, Meerut, IndiaBachelor of Education (2008) – Vedant College of Education, Hapur, IndiaBachelor of Science (Physics, Chemistry, Maths) (2007) – Hindu College, Moradabad, India

šŸ“š Academic and Research Experience

Over a decade of teaching experience in renowned institutions, including Ch. Charan Singh University, Meerut, and currently at Meerut Institute of Technology.Research expertise in areas such as photocatalytic applications, organic compound degradation, water splitting for hydrogen production, and antibacterial activities.Proficient in experimental techniques including DC/RF Magnetron Sputtering, Spin Coating, Hydrothermal Method, and various spectroscopic methods.

šŸ“ Research Publications and Presentations

Author of several peer-reviewed research papers published in reputed journals, as well as presentations at national and international conferences.Notable publications include studies on CNT-TiO2 nanocomposites, PbS thin films, and sputter deposited TiO2 thin films.

šŸ† Awards and Recognitions

Recipient of the Best Paper Award in the 1st Edition of International Research Excellence Best Paper Awards.Patent holder for the hydrothermal process of preparing CNT-templated TiO2 nanospheres.

šŸŒ Workshops, Webinars, and Collaborations

Active participation in workshops and webinars on diverse topics including nanomaterials, intellectual property rights, and interdisciplinary research.Collaboration with international institutions for technical virtual training on nanomaterials and nanoparticle-based plasma bioscience.I am committed to utilizing my expertise and enthusiasm for scientific inquiry to contribute meaningfully to the growth and success of your organization. Together, let’s embark on a journey of discovery and innovation for the betterment of society and the nation.

šŸ“ŠĀ Citation Metrics (Google Scholar):

Citations by: All ā€“ 1135, Since 2018 ā€“1003

h-index: All ā€“ 16, Since 2018 ā€“ 16

i10 index: All ā€“ 32, Since 2018 ā€“28

Prof Dr. Claudio Urrea | Robotics | Best Researcher Award | 2751

Prof Dr. Claudio Urrea | Robotics | Best Researcher Award

Prof Dr. Claudio Urrea,Ā  Universidad de Santiago de, ChileĀ 

Mr. Carlos DomĆ­nguez Acosta is academic and researcher in the field of renewable energy, holds a PhD in Bio systems Engineering from Kangwon National University, South Korea. His academic journey has been marked by a profound dedication to advancing solar energy technologies, specifically in solar thermal harvesting and its integration into agricultural and architectural applications.

 

Professional Profiles:

Google scholar

ORCID

šŸ‘Øā€šŸŽ“ Education and Experience

I earned my B.Eng. from Universidad TecnolĆ³gica de La Habana, Havana, Cuba, in 2014. Following graduation, I served as a professor at Universidad TecnolĆ³gica de La Habana, contributing to the Faults Diagnosis and Parameters Estimation for Industrial Processes research group. Our work, focused on fuzzy logic for faults diagnosis, was presented internationally and published in a reputable journal. Currently pursuing a Ph.D. in Electric Engineering at Universidad de Santiago de Chile since March 2021, my research interests span robotics, automation, process control, artificial intelligence, faults diagnostics, and fault-tolerant control.

šŸŒ Research and Innovations

I have completed three research projects, with a citation index of 1 in Scopus/Web of Science. My cumulative impact factor for the last three years stands at 20.5. Aiming to bridge gaps in robotics, I’ve developed a novel 4-arm Delta parallel manipulator for the food industry, incorporating intelligent control and fuzzy logic techniques. These contributions form a foundation for future industrial applications and guide the next generation of researchers.

šŸ† Achievements

Two journals published in Scopus, Web of Science, and PubMed indexes.Graduated two research scholars.Organized and presented at one conference.Received one award.

šŸš€ Contribution to R&D and Extension Activities

My research supports robotics development, specifically a 4-arm Delta manipulator for the food industry. Intelligent control and fuzzy logic techniques contribute to a space lacking attention, providing foundations for industrial applications and inspiring future researchers.

šŸ“ Self Declaration

I affirm the accuracy and completeness of the provided information. Any concealment of material information may lead to the termination of my application. I have read and agreed to the terms, conditions, and policies of the International Research Awards.

šŸ“ŠĀ Citation Metrics (Google Scholar):

Citations by: All ā€“ 35, Since 2018 ā€“ 30

h-index: All ā€“ 1, Since 2018 ā€“ 1

i10 index: All ā€“ 1, Since 2018 ā€“1