Da Wan Kim | Soft Robotics | Best Researcher Award

Prof. Da Wan Kim | Soft Robotics | Best Researcher Award

Assistant Professor | korea national university of transportation | South Korea

Assistant Professor in the Department of Electronic Engineering at Korea National University of Transportation (KNUT). With a background in chemical engineering and an interdisciplinary focus, he is recognized for his innovative research in soft bioelectronics, bioinspired adhesives, and skin-interfacing devices. His career bridges materials science, electronics, and biomedical applications, positioning him at the forefront of next-generation wearable technologies. After completing his B.Sc. and Ph.D. in Chemical Engineering at, Prof. Kim conducted postdoctoral research under Prof. Changhyun Pang and held a visiting researcher position at the. In , he joined KNUT as a faculty member, where he continues to explore adaptive materials and systems for human-machine interfaces, many of which have been featured on journal covers. His work is supported by several domestic and international patents related to advanced adhesives and sensor technologies. With a commitment to interdisciplinary collaboration, he continues to make significant contributions to smart, sustainable, and human-centric electronics

Professional Profile

Education

Prof. Da Wan Kim’s academic foundation is rooted in Chemical Engineering, having completed both his undergraduate and doctoral studies at Sungkyunkwan University in South Korea. His B.Sc. in Chemical Engineering  provided a strong grounding in thermodynamics, materials science, and process systems, which laid the groundwork for his transition into advanced materials research. He pursued his Ph.D. in Chemical Engineering under the mentorship of Prof. Changhyun Pang, focusing on bioinspired adhesive architectures for soft bioelectronics. His doctoral research emphasized multifunctional materials for skin-like electronics, exploring how nature-inspired strategies could enable better adaptability, adhesion, and integration with biological tissues. His dissertation contributed significantly to the fields of wearable technology and bioelectronics, and his early publications garnered international attention for their novelty and applicability. Throughout his academic journey, Prof. Kim demonstrated strong interdisciplinary engagement by integrating principles from chemical engineering, nanotechnology, biomedical engineering, and electronics. His academic performance and research outcomes during his Ph.D. positioned him for highly competitive postdoctoral and faculty roles.

Experience

Prof. Da Wan Kim has cultivated a rich and diverse professional portfolio in the fields of soft electronics, materials science, and bioengineering. Sinc, he has served as an Assistant Professor* in the Department of Electronic Engineering at Korea National University of Transportation (KNUT), where he leads research in soft bioelectronics and adaptive wearable systems. Prior to his faculty appointment, he worked as a Postdoctoral Researcher  in the Department of Chemical Engineering at Sungkyunkwan University, where he collaborated with Prof. Changhyun Pang on projects related to electroactive adhesives, self-healing materials, and next-generation skin-interfacing devices. During the same period, he was also a Visiting Researcher at KRISS (Korea Research Institute of Standards and Science) under the supervision of Dr. Minseok Kim, broadening his expertise in nanocharacterization and precision sensor design. His collaborative work has resulted in over high-impact publications, several  and journal features, including cover articles in Advanced Materials InfoMat, and ACS Nano. He has played both leading and corresponding author roles, underscoring his integral contributions.

Research Focus

Prof. Da Wan Kim’s research lies at the intersection of chemical engineering, materials science, and soft electronics, with a specific focus on bioinspired adhesives wearable sensors, and haptic human-machine interfaces. He explores the structure-property-function relationships of adaptive materials that interact seamlessly with human skin and biological environments. A hallmark of his research is the translation of biological adhesion mechanisms inspired by octopi, beetles, and amphibians—into engineered materials capable of wet/dry adhesion, electroactivity, and biocompatibility. These developments have applications in soft robotics, electronic skin (e-skin) and personalized healthcare devices. His recent work includes designing Marangoni-driven 3D microdomes for e-skin, self-healing micro-suction adhesives, and skin-adaptive optical sensors for biofluid analysis. He also investigates structural nanocomposites for energy harvesting, sensory feedback, and wireless communications in flexible systems. By combining*nanoengineering, functional polymers, and bioinspired mechanics, Prof. Kim’s lab develops platforms for autonomous, multifunctional, and sustainable soft electronics. His research contributes to the future of wearable healthcare XR technologies, and robotic interfaces aiming to bridge the physical and digital with comfort, intelligence, and adaptability.

Awards and Honors

Prof. Da Wan Kim has received significant academic recognition through featured journal covers, corresponding authorships, and international patent filings, reflecting the impact and novelty of his research in the fields of bioelectronics and functional materials. Multiple of his works have been selected for cover stories in prestigious journals such as Advanced Functional Materials ACS Nano Chemical Engineering Journal, and Advanced Materials Technologies. This includes the Inside Front Cover selection for his  article in Advanced Functional Materials on haptic interface platforms, and Back Cover features in Advanced Materials and Nano Research. These distinctions highlight the visual and scientific appeal of his designs, often inspired by octopus limbs, suction dynamics, or bioadaptive mechanisms. Prof. Kim has also co-invented more than  in South Korea and U.S.  related to adhesive materials, wearable devices, and sensor systems. His patents cover innovations such as vibration-resistant dry adhesives micro-absorbent hybrid patches, and fiber-based temperature sensors. Although early in his faculty career, his consistent publication record, interdisciplinary projects, and translational research achievements suggest a trajectory of continued recognition in academic and industrial spheres. His awards are evidence of his leadership in innovation-driven materials science.

Publication Top Notes

Bioinspired Hierarchical Soft Gripper with Hexagonal and Suction Interfaces for Strain-Guided Object Handling

Year 2025

Biodegradable Adhesive Interfaces for Bioelectronic and Biomedical Applications

Year 2025

Spatiotemporal molecular tracing of ultralow-volume biofluids via a soft skin-adaptive optical monolithic patch sensor

Year 2025

Development of Bioinspired Robotic Gripping Technology for Gripping Rough & Wet Surfaces based on Tactile Sensing

Year 2022

Conclusion

Prof. Da Wan Kim’s impressive research record, interdisciplinary approach, and high-impact publications make him an excellent candidate for the Best Researcher Award. His innovative research focus and collaboration skills demonstrate significant potential for continued contributions to the field. With some additional emphasis on expanding his research scope, mentorship, and broader societal impact, Prof. Kim’s application would be even stronger. Overall, he is a strong contender for the award.

Atsushi Kakogawa | Robotics and Mechatronics | Best Researcher Award

Assoc. Prof. Dr Atsushi Kakogawa |  Robotics and Mechatronics | Best Researcher Award

Associate Professor at Ritsumeikan University, Japan

🌟 Atsushi Kakogawa, Ph.D., is an Associate Professor in Robotics at Ritsumeikan University, Japan. A pioneer in robotics, he excels in mobile robot design, mechanical systems, and embedded systems. Proficient in programming languages like C++, Python, and more, Dr. Kakogawa has a prolific career marked by teaching, research, and leadership in international robotics conferences.

Profile

scholar

Education🎓 

Doctor of Engineering, Ritsumeikan University, Japan, 2015.  Master of Engineering, Ritsumeikan University, Japan, 2012.  Bachelor of Engineering, Department of Robotics, Ritsumeikan University, Japan, 2010.

Experience💼

Associate Professor, Ritsumeikan University (2023–Present).  Lecturer and Visiting Assistant Professor at University of Waterloo (2017). Assistant Professor, Ritsumeikan University (2015–2019).

Awards and Honors🏆

KAKENHI Grants from Japan Society for the Promotion of Science. Shiga Prefecture Technology Promotion Subsidy (2022). Organizer and Editor roles in top IEEE conferences, including IROS and ICRA.

Research Focus🤖

Robotics: Mobile robot design and mechanical system applications.  Embedded systems and advanced Internet communication technologies.  Multidisciplinary programming in C++, Python, and SQL for robotics innovation.

Publication  Top Notes

Design of a Multilink-Articulated Wheeled Pipeline Inspection Robot Using Only Passive Elastic Joints

Journal: Advanced Robotics, 2018

Citations: 73

Highlights: Introduces a pipeline robot leveraging passive elastic joints for adaptability in complex pipeline systems.

Mobility of an In-Pipe Robot with Screw Drive Mechanism Inside Curved Pipes

Conference: IEEE International Conference on Robotics and Biomimetics, 2010

Citations: 72

Highlights: Explores screw drive mechanisms for pipeline robots navigating curved environments.

Stiffness Design of Springs for a Screw Drive In-Pipe Robot to Pass Through Curved and Vertical Pipes

Journal: Advanced Robotics, 2012

Citations: 55

Highlights: Focuses on optimizing spring stiffness to enhance robot mobility in diverse pipe geometries.

Designing Arm Length of a Screw Drive In-Pipe Robot for Climbing Vertically Positioned Bent Pipes

Journal: Robotica, 2016

Citations: 50

Highlights: Discusses arm length designs crucial for overcoming vertical bends in pipelines.

An In-Pipe Robot with Underactuated Parallelogram Crawler Modules

Conference: IEEE International Conference on Robotics and Automation, 2014

Citations: 48

Highlights: Presents a robot with a novel crawler module enhancing adaptability and efficiency.

Design of a Multilink-Articulated Wheeled Inspection Robot for Winding Pipelines: AIRo-II

Conference: IEEE/RSJ Intelligent Robots and Systems, 2016

Citations: 46

Highlights: Develops AIRo-II, a wheeled robot optimized for winding and complex pipelines.

Pathway Selection Mechanism of a Screw Drive In-Pipe Robot in T-Branches

Conference: IEEE International Conference on Automation Science and Engineering, 2012

Citations: 42

Highlights: Proposes mechanisms for robots to autonomously navigate pipeline branches.

Development of a Screw Drive In-Pipe Robot for Passing Through Bent and Branch Pipes

Conference: IEEE ISR, 2013

Citations: 41

Highlights: Focuses on screw drive robots overcoming pipeline bends and branches.

Underactuated Modular Finger with Pull-In Mechanism for a Robotic Gripper

Conference: IEEE Robotics and Biomimetics, 2016

Citations: 40

Highlights: Introduces a robotic gripper using an underactuated mechanism for enhanced grasping.

Stiffness Design of a Resonance-Based Planar Snake Robot with Parallel Elastic Actuators

Journal: IEEE Robotics and Automation Letters, 2018

Citations: 39

Highlights: Examines stiffness optimization for snake robots in planar environments.

Conclusion

Dr. Atsushi Kakogawa is a highly accomplished researcher whose contributions to robotics and mechatronics make him a strong contender for the Best Researcher Award. His academic rigor, leadership in the robotics community, and innovation in mobile and embedded systems distinguish him as a trailblazer in his field. By addressing areas such as industrial collaboration and broader global recognition, he could solidify his position as a preeminent figure in robotics research.

Atsushi Kakogawa | Robotics and Mechatronics | Best Researcher Award Ritsumeikan University

Assoc. Prof. Dr Atsushi Kakogawa |  Robotics and Mechatronics | Best Researcher Award

Associate Professor at Ritsumeikan University, Japan

🌟 Atsushi Kakogawa, Ph.D., is an Associate Professor in Robotics at Ritsumeikan University, Japan. A pioneer in robotics, he excels in mobile robot design, mechanical systems, and embedded systems. Proficient in programming languages like C++, Python, and more, Dr. Kakogawa has a prolific career marked by teaching, research, and leadership in international robotics conferences.

Profile

scholar

Education🎓 

Doctor of Engineering, Ritsumeikan University, Japan, 2015.  Master of Engineering, Ritsumeikan University, Japan, 2012.  Bachelor of Engineering, Department of Robotics, Ritsumeikan University, Japan, 2010.

Experience💼

Associate Professor, Ritsumeikan University (2023–Present).  Lecturer and Visiting Assistant Professor at University of Waterloo (2017). Assistant Professor, Ritsumeikan University (2015–2019).

Awards and Honors🏆

KAKENHI Grants from Japan Society for the Promotion of Science. Shiga Prefecture Technology Promotion Subsidy (2022). Organizer and Editor roles in top IEEE conferences, including IROS and ICRA.

Research Focus🤖

Robotics: Mobile robot design and mechanical system applications.  Embedded systems and advanced Internet communication technologies.  Multidisciplinary programming in C++, Python, and SQL for robotics innovation.

Publication  Top Notes

Design of a Multilink-Articulated Wheeled Pipeline Inspection Robot Using Only Passive Elastic Joints

Journal: Advanced Robotics, 2018

Citations: 73

Highlights: Introduces a pipeline robot leveraging passive elastic joints for adaptability in complex pipeline systems.

Mobility of an In-Pipe Robot with Screw Drive Mechanism Inside Curved Pipes

Conference: IEEE International Conference on Robotics and Biomimetics, 2010

Citations: 72

Highlights: Explores screw drive mechanisms for pipeline robots navigating curved environments.

Stiffness Design of Springs for a Screw Drive In-Pipe Robot to Pass Through Curved and Vertical Pipes

Journal: Advanced Robotics, 2012

Citations: 55

Highlights: Focuses on optimizing spring stiffness to enhance robot mobility in diverse pipe geometries.

Designing Arm Length of a Screw Drive In-Pipe Robot for Climbing Vertically Positioned Bent Pipes

Journal: Robotica, 2016

Citations: 50

Highlights: Discusses arm length designs crucial for overcoming vertical bends in pipelines.

An In-Pipe Robot with Underactuated Parallelogram Crawler Modules

Conference: IEEE International Conference on Robotics and Automation, 2014

Citations: 48

Highlights: Presents a robot with a novel crawler module enhancing adaptability and efficiency.

Design of a Multilink-Articulated Wheeled Inspection Robot for Winding Pipelines: AIRo-II

Conference: IEEE/RSJ Intelligent Robots and Systems, 2016

Citations: 46

Highlights: Develops AIRo-II, a wheeled robot optimized for winding and complex pipelines.

Pathway Selection Mechanism of a Screw Drive In-Pipe Robot in T-Branches

Conference: IEEE International Conference on Automation Science and Engineering, 2012

Citations: 42

Highlights: Proposes mechanisms for robots to autonomously navigate pipeline branches.

Development of a Screw Drive In-Pipe Robot for Passing Through Bent and Branch Pipes

Conference: IEEE ISR, 2013

Citations: 41

Highlights: Focuses on screw drive robots overcoming pipeline bends and branches.

Underactuated Modular Finger with Pull-In Mechanism for a Robotic Gripper

Conference: IEEE Robotics and Biomimetics, 2016

Citations: 40

Highlights: Introduces a robotic gripper using an underactuated mechanism for enhanced grasping.

Stiffness Design of a Resonance-Based Planar Snake Robot with Parallel Elastic Actuators

Journal: IEEE Robotics and Automation Letters, 2018

Citations: 39

Highlights: Examines stiffness optimization for snake robots in planar environments.

Conclusion

Dr. Atsushi Kakogawa is a highly accomplished researcher whose contributions to robotics and mechatronics make him a strong contender for the Best Researcher Award. His academic rigor, leadership in the robotics community, and innovation in mobile and embedded systems distinguish him as a trailblazer in his field. By addressing areas such as industrial collaboration and broader global recognition, he could solidify his position as a preeminent figure in robotics research.

Prof. Manmatha Mahato | Soft robotics Award | Best Researcher Award

Prof. Manmatha Mahato | Soft robotics Award | Best Researcher Award

Prof. Manmatha Mahato, Korea Advanced Institute of Science and Technology (KAIST), South Korea

Prof. Manmatha Mahato 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 

Google scholar

🎓 Education Journey:

Dr. Manmatha Mahato, currently a Research Associate Professor at the Department of Mechanical Engineering, Korea Advanced Institute of Science and Technology (KAIST), Republic of Korea, stands as a beacon of innovation in the realm of materials mechanics. With a rich academic background and a plethora of research accomplishments, Dr. Mahato has carved a niche for himself in the field.Ph.D. in Materials Science from IIT Kharagpur, India (2017)MSc. in Chemistry from RTM Nagpur University, India (2009)BSc. in Chemistry Honors from The University of Burdwan, India (2007)

👨‍💼 Professional Endeavors:

Research Associate Professor at KAIST (2023 – Present)Post-doctoral Researcher at KAIST (2019 – 2023)Product-Head at Aakar Innovations, Navi Mumbai, India (2017 – 2018)Project Assistant at National Metallurgical Laboratory, Jamshedpur, India (2009 – 2011)

🏆 Awards and Honors:

NANO KOREA Young Scientist Award (2022)Multiple GATE (Graduate Aptitude Test in Engineering) achievements (2012, 2013, 2014)NET (National Eligibility Test) from CSIR-UGC, India (2012)

📚 Research Contributions:

Total Publications: 45First Authorship: 19Citations: 913h-index: 16Notable Publications in Leading Journals:Science AdvancesNature CommunicationsAdvanced MaterialsAdvanced Energy MaterialsAdvanced Functional MaterialsAdvanced ScienceSmallNano EnergySmartMatEnergy and Environmental MaterialsAdvanced Materials TechnologiesAdvanced Materials InterfacesACS Applied Materials & Interfaces

🌐 Research Impact:

Featured in numerous international and national news outletsRecognized by the scientific community with cover images on leading journalsHighlighted in research blogs and patents

🎙️ Recent Invited Talks:

SPIE Smart Structures + Nondestructive Evaluation, Long Beach, California, United States (March 26, 2024)Recent Trends in Applied Sciences: A Special Focus on Nanoscience and Nanomaterials (RTAS-2024), NEHU Shillong, India (March 23, 2024)Emerging Trends in Nanomaterials for Different Device Architectures, Indian Chemical Society (November 21, 2021)Mechanical Engineering Seminar, Department of Mechanical Engineering, Wonkwang University, Republic of Korea

🔍 Research Highlights:

Dr. Mahato’s pioneering work on electronically conjugated polysulfonated covalent organic frameworks (pS-COF) has led to groundbreaking advancements in soft electrochemical actuators.His research on metal-free covalent triazine frameworks (CTF) has revolutionized the development of electro-ionic soft actuators with controllable high bending deformation.🌟 Dr. Manmatha Mahato’s journey is not only marked by academic excellence but also by a relentless pursuit of innovation, making him a true maverick in materials mechanics.

Since 2019:

  • Citations: 837
  • h-index: 16
  • i10-index: 22

Overall:

  • Citations: 953
  • h-index: 16
  • i10-index: 22

📖 Publications  Top Note :

Stimuli‐responsive MXene‐based actuators

VH Nguyen, R Tabassian, S Oh, S Nam, M Mahato, P Thangasamy, …

Published in Advanced Functional Materials, Volume 30, Issue 47, 2020

Cited: 135 times

Skin-attachable and biofriendly chitosan-diatom triboelectric nanogenerator

JN Kim, J Lee, TW Go, A Rajabi-Abhari, M Mahato, JY Park, H Lee, IK Oh

Published in Nano Energy, Volume 75, 2020

Cited: 126 times

CTF-based soft touch actuator for playing electronic piano

M Mahato, R Tabassian, S Oh, S Nam, WJ Hwang, IK Oh

Published in Nature communications, Volume 11, Issue 1, 2020

Cited: 53 times

Sulfur‐and nitrogen‐rich porous π‐conjugated COFs as stable electrode materials for electro‐ionic soft actuators

M Mahato, R Tabassian, VH Nguyen, S Oh, S Nam, KJ Kim, IK Oh

Published in Advanced Functional Materials, Volume 30, Issue 46, 2020

Cited: 41 times

Graphene mesh for self‐sensing ionic soft actuator inspired from mechanoreceptors in human body

R Tabassian, VH Nguyen, S Umrao, M Mahato, J Kim, M Porfiri, IK Oh

Published in Advanced Science, Volume 6, Issue 23, 2019

Cited: 38 times

Electronically Conjugated Multifunctional Covalent Triazine Framework for Unprecedented CO2 Selectivity and High‐Power Flexible Supercapacitor

M Mahato, S Nam, R Tabassian, S Oh, VH Nguyen, IK Oh

Published in Advanced Functional Materials, Volume 32, Issue 5, 2022

Cited: 31 times

Metal organic framework‐MXene nanoarchitecture for fast responsive and ultra‐stable electro‐ionic artificial muscles

M Garai, M Mahato, S Nam, E Kim, D Seo, Y Lee, VH Nguyen, S Oh, …

Published in Advanced Functional Materials, Volume 33, Issue 10, 2023

Cited: 24 times

A Dual‐Responsive Magnetoactive and Electro–Ionic Soft Actuator Derived from a Nickel‐Based Metal–Organic Framework

M Mahato, WJ Hwang, R Tabassian, S Oh, VH Nguyen, S Nam, JS Kim, …

Published in Advanced Materials, Volume 34, Issue 35, 2022

Cited: 20 times

Assist Prof Dr. Onur Denizhan | Robotics | Best Researcher Award

Assist Prof Dr. Onur Denizhan | Robotics | Best Researcher Award

Assist Prof Dr. Onur Denizhan, Universidad ECCI, Colombia

Assist Prof Dr. Onur Denizhan 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:

ORCID

Google scholar

🔍 Research Interests:

Kinematics analysis and synthesis of mechanisms, mechanism design, design optimization, origami-based mechanism design, automotive systems, robotics, haptics, bio-inspired compliant mechanisms, control, mechatronics, applications of artificial intelligence in engineering design.

👨‍🏫 Employment:

Feb. 2024 – Present: Assistant Professor, Department of Mechanical Engineering, Batman University, Batman, TRDec. 2021 – Jan. 2024: Lecturer, Department of Electronics and Automation, Batman University, Batman, TR

🎓 Education:

Aug 2017 – Aug 2021: Ph.D. in Mechanical Engineering & Mechanics, Lehigh University, Bethlehem, PA, USSep 2015 – Aug 2017: Ph.D. Student in Mechanical Engineering, Columbia University (Transferred to Lehigh)Jan 2014 – Aug 2015: M.Sc. in Mechanical Engineering & Mechanics, Lehigh University, Bethlehem, PA, USSep 2007 – Jun 2011: B.Sc. in Mechanical Engineering, Inonu University, Malatya, TRSep 2023 – Present: B.A. in Economics, Anadolu University, Eskisehir, TR

🏆 Awards and Honors:

2020: Rossin College Graduate Leadership and Service Award, Lehigh University2019 – 2021: Teacher Assistant of the Year Honorable Mentions, Lehigh University2020: Graduate Student Senate Champion, Lehigh University2019 – 2021: Lehigh University Department of Mechanical Engineering and Mechanics Tuition Award

🎓 Scholarships and Grants:

2020: Graduate Student Senate Travel Grant, Lehigh University (ASME IDETC/CIE 2020)2020: Graduate Student Senate Travel Grant, Lehigh University (ASME IMECE 2020)Jan 2012 – Aug 2020: Study Abroad Full Scholarship (for M.Sc. and Ph.D.), Turkish Ministry of EducationJuly 2011: M.Sc. and Ph.D. Full Scholarship (Declined for studying abroad), Turkish Council of Higher EducationJun 2011: Finalist Design Team Award, Systemair-HSK AS Company Project Competition🎙️ Invited Talks:Jan. 2024: Batman University Sustainability Talk Series: “Making AI Work for Us”Dec. 2022: Batman University: “Scholarship Opportunities Abroad”May 2020: Lehigh University Rossin Connection Podcast, Episode 6: “The Journey of Onur Denizhan”

🔬 Research Experience:

Aug 2017 – Aug 2021: Research Assistant, Lehigh University (Mechanism design and optimization projects)Aug 2015 – Aug 2017: Research Assistant, Columbia University (Design and experiment of Spine Brace Project)Jan 2014 – Aug 2015: Research Assistant, Lehigh University (Optimum design of linkage mechanisms project)Nov 2010 – Jun 2011: Undergraduate Research Assistant, Inonu University (Design and implementation of energy-efficient central air conditioning systems)

👨‍🏫 Teaching Experience:

Spring ‘22 – Present: Instructor, Batman University (Various courses including Computer Supported Design, Artificial Neural Networks, Robot Analysis)Fall ’18 – Spring ’21: Department Graduate Assistant, Lehigh University (Courses including Graphics for Engineering Design, Mechanical Engineering Laboratory, Thermodynamics, Computer-Aided Design)Fall ‘16: Grader and Course Assistant, Columbia University (Graduate courses homework and exams grader)

📊 Citation Metrics (Google Scholar):

Citations by: All – 18, Since 2018 – 18
h-index: All – 3, Since 2018 – 3
i10 index: All – 0, Since 2018 –0