Mr. Yuchao Wang, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, China
Wang Yuchao is a dedicated Ph.D. candidate in Physics (Radio Physics) at Wuhan University of Technology, where he has been advancing his studies since September 2022. He previously earned his Master’s and Bachelor’s degrees in Physics and Electronic Information Science and Technology, respectively, from the same institution. His research focuses on rectennas and wireless energy harvesting, contributing to several high-impact publications in prestigious journals. Notable works include advancements in omnidirectional rectenna efficiency, multi-band rectifier systems, and innovative energy harvesting solutions for batteryless IoT devices. With a strong publication record, including first-authored papers in IEEE Transactions and Nature Communications, Wang is recognized for his contributions to enhancing energy conversion efficiency and developing flexible, adaptive systems for modern energy challenges. His commitment to research positions him as a promising scholar in the field of wireless energy technologies.
Summary of Suitability for the Top Researcher Award: Yuchao Wang
Yuchao Wang, a promising researcher in the field of radio physics and wireless energy harvesting, is a suitable candidate for the Top Researcher Award due to his impressive academic background, significant research contributions, and strong publication record. Here are the key points that highlight his qualifications
🎓 Education Background
Ph.D. in Physics (Radio Physics)
Wuhan University of Technology
September 2022 — Present
M.Sc. in Physics (Radio Physics)
Wuhan University of Technology
September 2018 — June 2021
B.Sc. in Electronic Information Science and Technology
Wuhan University of Technology
September 2014 — June 2018
💼 Work Experience
Researcher
Wuhan University of Technology
Focus: Rectenna and Wireless Energy Harvesting
September 2014 — Present
Achievements 🏆
First Author Publications: Wang Yuchao has made significant contributions to the field of wireless energy harvesting, authoring several impactful papers in reputable journals:
“Efficiency Enhanced Seven-Band Omnidirectional Rectenna for RF Energy Harvesting,” IEEE Transactions on Antennas and Propagation, Sept. 2022.
“Rectifying Network Common Items Extraction for Complex Multi-Band Rectifiers: Theory, Design, and Experimental Verification,” IEEE Transactions on Circuits and Systems I, July 2024.
“Highly Efficient Broadband Ambient Energy Harvesting System Enhanced by Meta-Lens for Wirelessly Powering Batteryless IoT Devices,” IEEE Internet of Things Journal, Aug. 2024.
“Adaptive Multiband Rectifier System for Stabilized Wireless Energy Harvesting at Flexible Distances and Dynamic Conditions,” IEEE Transactions on Industrial Electronics, June 2024.
Additional publications highlighting innovative research in rectenna systems and energy harvesting.
Awards and Honors 🎖️
Outstanding Graduate Design Award (2018)
Chinese Ministry of Education
Recognized for exceptional academic and project work during the Bachelor’s program.
Research Excellence Award (2023)
Wuhan University of Technology
Awarded for contributions to the research community and significant publications in leading journals.
Best Paper Award (2024)
IEEE Transactions on Antennas and Propagation
For the paper “Rectenna-Enabled New Paradigm with Hybrid Harmonic Beamforming for Integrated Energy Harvesting, Sensing and Communications.”
Publication Top Notes:
Dual-Port Six-Band Rectenna with Enhanced Power Conversion Efficiency at Ultra-Low Input Power
Two-Port Five-Band Rectenna for Ultra-Low Ambient RF Energy Harvesting
A Broadband Low-RCS Circularly Polarized Meta-Antenna
A High-Efficiency and Reconfigurable Rectenna Array for Dynamic Output DC Power Control
BST-silicon hybrid terahertz meta-modulator for dual-stimuli-triggered opposite transmission amplitude control
Efficiency Enhanced Seven-Band Omnidirectional Rectenna for RF Energy Harvesting
Dr. Shehroze Khan, NED University of Engineering and Technology, Pakistan
Shehroze Tahir Khan is a dynamic mechanical engineer, currently serving as an Assistant Professor at NED University of Engineering and Technology, Karachi. He earned his Ph.D. in Mechanical Engineering from the same institution in 2023. With extensive experience in both industry and academia, Shehroze has a robust portfolio in areas such as MEMS device fabrication, smart materials, and nanogenerators. He has contributed to numerous high-impact research projects, secured research grants, and published extensively in peer-reviewed journals. His professional career spans across teaching, conducting cutting-edge research, and industrial roles where he spearheaded critical operational improvements in various engineering processes. A dedicated educator and researcher, Shehroze is committed to advancing the field of mechanical engineering through his innovative projects and research, fostering the next generation of engineers
Summary of Shehroze Tahir Khan’s Suitability for the Best Researcher Award:
Shehroze Tahir Khan is highly suitable for the Best Researcher Award due to his extensive research in MEMS and smart materials, his active role in academia and industry, and his notable achievements in securing research grants and leading innovative projects. His contributions significantly advance the fields of flexible electronics and mechanical systems, making him a deserving candidate for this prestigious award.
Education
Shehroze Tahir Khan holds a Ph.D. in Mechanical Engineering from NED University of Engineering and Technology, Karachi (2023), with a thesis on dynamic mechanical characterizations of thin film materials for MEMS applications. He also earned a Master’s in Engineering Management (M.E.M.) from the Department of Industrial and Manufacturing Engineering at the same university in 2015, where he honed his skills in managing complex engineering projects and systems. His academic journey began with a Bachelor of Engineering (B.E.) in Mechanical Engineering from NEDUET in 2013, where he developed a strong foundation in mechanical systems, materials, and engineering design. Throughout his educational career, Shehroze demonstrated academic excellence, successfully integrating theory with practice and contributing significantly to research projects. His educational background has equipped him with the knowledge and skills to excel in both academic and industrial sectors.
Experience
Shehroze Tahir Khan has built a versatile career in both academia and industry. He is currently an Assistant Professor at NED University of Engineering and Technology, where he teaches mechanical engineering courses, including Mechanical Vibrations, and supervises undergraduate projects in mechatronics and thin-film devices. From 2016 to 2023, he served as a Lecturer at NEDUET, guiding students through various engineering disciplines such as Mechanics of Machines and Engineering Graphics. Before joining academia, Shehroze worked as a Production Engineer at International Steels Limited from 2014 to 2016, where he led a team in overseeing plant operations, quality control, and maintenance. His industrial experience also includes optimizing production processes, implementing safety measures, and managing inventory. His diverse roles have allowed him to bridge the gap between theoretical knowledge and practical application, making significant contributions in both educational and industrial settings.
Awards and Honors
Shehroze Tahir Khan has been recognized for his research and academic contributions with several awards and honors. He won a prestigious research grant of PKR 2.3 million for a project aimed at the digitalization of a hydraulic spring testing machine, funded by the Ministry of Science and Technology (MoST). His organizational skills were highlighted when he successfully coordinated the 8th International Mechanical Engineering Conference (IMEC-2018) at NED University, Karachi. During his time at International Steels Limited, Shehroze implemented the 5S methodology, improving operational efficiency and safety, a contribution that was widely acknowledged within the organization. His work in both academia and industry showcases his commitment to innovation and excellence, earning him a respected place among his peers. These accolades underscore his dedication to advancing engineering practices and fostering continuous improvement in his field.
Research Focus
Shehroze Tahir Khan’s research focuses on the fabrication and characterization of Micro-Electro-Mechanical Systems (MEMS) devices, with particular attention to stretchable and flexible electronics. His work in mechanical characterization techniques for thin-film devices has significant implications for the development of next-generation smart materials, including triboelectric and piezoelectric nanogenerators. Shehroze is dedicated to exploring the mechanical properties of advanced materials to enhance their application in MEMS, making strides in the fields of energy harvesting and flexible electronics. His research also delves into the integration of smart materials into wearable technology, contributing to advancements in the Internet of Things (IoT) and energy-efficient systems. By focusing on the practical applications of these materials in dynamic environments, his work has the potential to revolutionize sectors such as healthcare, consumer electronics, and renewable energy.
Publications Top Notes
Electromechanical characterizations of PEDOT: PSS and its nanocomposite thin films on a cost-effective polymer substrate for microelectromechanical systems (MEMS) applications.
Characterizations of a cost-effective single component polymer for stretchable and flexible microelectromechanical systems applications
Dynamic electromechanical characterizations of poly (vinylidene fluoride) based nanocomposite films on ultra‐low modulus polymer substrate
Fabrication and characterizations of a low-cost thermal actuator for micro-electro-mechanical systems (MEMS) applications
PIEZOELECTRIC TESTING OF COMMERCIAL PVDF THIN FILM SENSOR
Assoc. Prof. Dr. Mariana Kasynets, Lviv Polytechnic National University, Ukraine
Mariana Kasynets is an Associate Professor in the Department of Heat and Gas Supply and Ventilation at Lviv Polytechnic National University in Ukraine. Born on September 24, 1987, in Lviv, she holds a Ph.D. and has over 12 years of experience in academia. A graduate of Lviv Polytechnic Institute in 2009, Dr. Kasynets has made notable contributions to her field, authoring a total of 70 scientific works, including 24 articles indexed in the Scopus database, with a Hirsch Index of H=8. Her research efforts focus on advancing knowledge in heat and gas supply systems.
Suitability for the Research for Best Researcher Awards: Mariana Kasynets
Summary of Suitability
Mariana Kasynets is an exemplary candidate for the Research for Best Researcher Awards. Her extensive publication record, innovative research focus on ventilation and energy efficiency, and commitment to education and mentorship distinguish her as a leader in her field. Recognizing her with this award would not only honor her contributions but also encourage further advancements in sustainable building technologies, ultimately benefiting society by promoting healthier and more efficient living environments.
🎓Education:
In 2009, Mariana Kasynets graduated from Lviv Polytechnic Institute, earning a degree in higher education. She later pursued her Ph.D., specializing in areas related to heat and gas supply.
🏢Work Experience:
Mariana Kasynets has over 12 years of work experience and currently serves as an Associate Professor in the Department of Heat and Gas Supply and Ventilation at Lviv Polytechnic National University in Ukraine.
🏅Awards and Recognition:
Mariana Kasynets has authored a total of 70 scientific works, including 24 articles indexed in the Scopus database, demonstrating her significant contributions to her field. Her research impact is further reflected in her Hirsch Index of H=8.
Publication Top Notes:
Increasing the Efficiency of the Residential Buildings Premises Natural Ventilation
The Influence of the Interaction of Opposing Non-coaxial Round Jets on the Leakage Velocity Uniformity of the Resulting Air Flow
Enhancing of Efficiency of Solar Panels Combined with Buildings Coating
Mathematical Modeling of an Air Flow Leakage with the Jets Interaction at the Variable Mode