Jianping Li | Biotechnology | Best Researcher Award

Prof. Jianping Li | Biotechnology | Best Researcher Award

Associate professor at Zhejiang Normal University, China

Jianping Li, Ph.D., is an Associate Professor and master’s supervisor at Zhejiang Normal University. He specializes in micro- and nano‑scale actuators and sensors, bioelectrical impedance measurements, and energy‑harvesting technologies. Dr. Li has led around 20 academic projects and contributed to four industry collaborations. With over 130 scholarly publications, including 13 recognized by the Chinese Academy of Sciences and two among the top 1% most‑cited in ESI, his work drives innovation in piezoelectric precision positioning and early detection of thrombosis and tumors. He has authored or co‑authored six monographs/chapters and holds about 50 Chinese invention patents. Dr. Li serves on editorial boards for both Chinese and international journals such as Sensors, Frontiers in Mechanical Engineering, and IEEE Transactions on Industrial Electronics. He’s an IEEE, Chinese Society of Instrumentation & Control, and Japanese Thrombolysis Society member. His research has earned him the First Prize in the Mechanical Industry Science & Technology Award. He is deeply involved in advancing biomedical sensing and smart materials technology.

Professional Profiles📖

🎓 Education 

Dr. Jianping Li earned his Ph.D. in Mechanical Engineering, with a specialized focus on piezoelectric materials and their applications in micro/nano positioning and sensing. His doctoral research laid the foundation for innovations in actuator technology, energy harvesting, and bioelectrical impedance diagnostics. Through rigorous training, he mastered experimental instrumentation—including sealing ultra‑high‑temperature chambers, topology‑optimized specimen design, and precision signal acquisition—alongside theoretical modeling methods like finite-element analysis and multi‑physics coupling. His academic journey integrated deep coursework in mechanics, materials science, electronics, and bioengineering. During this formative period, he honed interdisciplinary skills bridging engineering and biomedical science. Publications during his Ph.D. included high-impact journals and electronic conference proceedings. Over time, he extended his scholarly output to six monographs and 50 patents, demonstrating how his educational grounding enabled groundbreaking research and practical engineering solutions in instrumentation and diagnostics.

🛠️ Experience 

Dr. Jianping Li brings over a decade of experience in academia and industry. At Zhejiang Normal University, he teaches and mentors graduate students as an Associate Professor and master’s supervisor. He leads 20 academic research projects spanning piezoelectric actuators, bioelectrical impedance systems, and energy-harvesting devices. In industry partnerships, he has overseen four consultancy projects, translating lab innovations into real-world applications. His extensive portfolio of 50 Chinese innovation patents covers actuator mechanisms, sensor modules, and diagnostic tools. He serves on editorial boards and guest-edits for journals like Sensors and Frontiers in Mechanical Engineering, and reviews manuscripts for IEEE Transactions on Industrial Electronics and Advanced Materials. Dr. Li also collaborates internationally through IEEE and Japanese research societies. He has designed complex instrumentation, including ultra-high-temperature sealed chambers and optimized mechanical testing systems. His breadth of experience reflects a seamless integration of research leadership, teaching, engineering design, intellectual property development, and global scientific engagement.

🏆 Awards & Honors 

Dr. Jianping Li excellence has been recognized through multiple honors and awards. He earned the First Prize in Technical Invention from the Chinese Mechanical Industry Science & Technology Award for his innovative work on sealed biaxial loading chambers and topology-optimized testing devices. Among his scholarly output, 13 papers were selected as “top papers” by the Chinese Academy of Sciences, and 2 achieved placement in the top 1% in ESI citation rankings. He’s been acknowledged as an Outstanding Reviewer by journals such as Sensors, IEEE/ASME Transactions on Mechatronics, and Advanced Materials. He’s served as Guest Editor and review editor for prestigious journals like Frontiers in Sensors and Biosensors & Bioelectronics, underscoring his leadership in peer review. His six monographs/book chapters from IntechOpen further showcase his editorial and scholarly impact. He holds 50 innovation patents—another testament to his inventiveness. His memberships (e.g., senior IEEE, Chinese biomedical and mechanical societies, Japanese Thrombolysis) reflect his professional standing and peer recognition. Collectively, these accolades reflect his multidisciplinary influence in science and engineering.

🔬 Research Focus 

Dr. Jianping Li research is centered at the intersection of smart mechatronic systems and biomedical diagnostics. He develops piezoelectric micro/nano actuators for ultra-precise motion control using advanced materials and topology-optimized structures. In the biomedical arena, he innovates bioelectrical impedance spectroscopy tools for early detection of thrombosis and tumors, designing portable and sensitive diagnostic devices. He also explores energy harvesting, converting ambient mechanical energy into electrical power for self-sustained sensing applications through piezoelectric and similar transducers. His work includes designing multi-field coupling test instruments, such as ultra-high-temperature sealed chambers for material testing. He integrates these domains to create intelligent, low-power diagnostic platforms and precision positioning systems. His experiments often span theoretical modeling, structural optimization, sensor integration, and prototype validation. This interdisciplinary research is positioned to drive advancements in medical diagnostics, materials testing, and autonomous micro-electromechanical systems.

💡 Skills 

Dr. Jianping Li brings a rich, interdisciplinary skill set combining engineering, biomedical science, and innovation management. He excels in actuator/sensor design—especially piezoelectric devices—employing topology optimization, finite-element modeling, and precision drive electronics. His expertise includes bioelectrical impedance measurement, developing diagnostic signal processing systems for thrombosis/tumor detection. He is experienced in energy-harvesting systems, integrating transducers and power-management circuits for autonomous sensors. He designs and builds experimental instrumentation, such as sealed high-temperature chambers and biaxial-loading rigs. He’s adept in multi-physics materials testing, combining mechanical, thermal, and electrical fields. With 50 patents, he navigates intellectual property development and technical writing. He also leads academic publication—with over 130 papers—and excels in editorial and peer-review workflows, contributing to journals like Sensors and IEEE Transactions. His project management skills include coordination of both academic and industry consortia, often across Chinese and Japanese institutions. Overall, Dr. Li is a systems thinker: bridging experimental mechanics, electronic diagnostics, and applied engineering.

📚 Publications Top Notes

Siphon self-powered water level warning system with energy harvesting function based on triboelectric nanogenerators

Authors: Not specified (multiple authors)

Year: 2025

Citations: 0

Source: Sustainable Energy Technologies and Assessments


Improving the surface charge density of multi-layered triboelectric nanogenerator by dual-electric field mutual inductance

Authors: Not specified

Year: 2025

Citations: 0

Source: Chemical Engineering Journal


Review of Triboelectric Nanogenerators Designs for Wave Energy Harvesting: Tailoring Strategies for Various Marine Conditions

Authors: Not specified

Year: 2025

Citations: 2

Source: Review Article (journal unspecified)


Recent Advances in Microfluidic Impedance Detection: Principle, Design and Applications

Authors: Not specified

Year: 2025

Citations: 0

Source: Review Article (journal unspecified)


Application of bioelectrical impedance detection techniques: Cells and tissues

Authors: Not specified

Year: 2025

Citations: 1

Source: Review Article (journal unspecified)

🔚 Conclusion

Dr. Jianping Li exemplifies the fusion of cutting-edge engineering and biomedical innovation. His pioneering research in micro/nano piezoelectric actuators and bioelectrical impedance diagnostics has advanced both precision instrumentation and early disease detection technologies. With a prolific publication record, numerous patents, and recognized awards, he continues to push the boundaries of mechatronic systems and healthcare applications. His interdisciplinary expertise, leadership in academia, and collaborations across industry and international societies position him as a leading figure driving impactful scientific and technological progress. Dr. Li’s ongoing commitment to innovation promises to deliver transformative solutions in medical diagnostics and smart material systems, underscoring his qualification for the Best Researcher Award.

Peng Teng | Biotechnology | Best Researcher Award

Assist. Prof. Dr. Peng Teng | Biotechnology | Best Researcher Award

Principal Investigator at Zhejiang University, China 

Dr. Peng Teng is an an accomplished scientist specializing in medicinal chemistry, drug discovery, and bioorganic chemistry. Currently serving as an Assistant Professor (Tenure-Track) at Zhejiang University, he has made significant contributions to the field of peptidomimetics, protein-protein interactions, and antimicrobial drug development. With an H-index of 29, he has authored numerous high-impact publications. Before joining Zhejiang University, Dr. Teng held research positions at the University of Wisconsin–Madison and the University of South Florida. His expertise spans synthetic chemistry, carbohydrate chemistry, and bioconjugation strategies for targeted therapeutics. Dr. Teng’s work has earned international recognition, influencing novel approaches in protein degradation and antibacterial drug design. His research is dedicated to developing next-generation therapeutic agents to combat bacterial resistance and improve human health.

Professional Profiles📖

ORCID

Education 🎓

Dr. Teng pursued his Ph.D. in Medicinal Chemistry at Nanjing University, where he worked under Prof. Jianxin Li at the State Key Laboratory of Analytical Chemistry for Life Science. Concurrently, he earned an M.S. in Chemistry from Lanzhou University, guided by Prof. Yongmin Liang. He further honed his research skills as a Postdoctoral Associate at the University of South Florida under Prof. Jianfeng Cai, exploring peptidomimetics and bioorganic chemistry. His academic journey continued at the University of Wisconsin–Madison as an Assistant Scientist, collaborating with Prof. Weiping Tang in drug discovery and protein degradation. His diverse educational background provided a strong foundation in synthetic chemistry, drug design, and biochemical applications, setting the stage for his pioneering contributions to antimicrobial and anticancer therapeutics.

Work Experience💼

Dr. Teng’s professional journey spans academia and industry. At Zhejiang University, he leads research at the Institute of Drug Discovery and Design, focusing on novel therapeutics for bacterial infections and protein interactions. Prior to this, he was an Assistant Scientist at the University of Wisconsin–Madison, where he worked on targeted protein degradation strategies. His postdoctoral tenure at the University of South Florida involved developing antimicrobial peptidomimetics. Earlier, he gained industry experience at WuXi AppTec as a Senior Organic Chemist, working on medicinal chemistry projects under Dr. Yang Zhang. His interdisciplinary experience bridges synthetic chemistry, bioorganic chemistry, and pharmaceutical applications, contributing to the advancement of innovative therapeutic strategies.

Awards and Honors 🏆

Dr. Teng has received numerous accolades for his groundbreaking research. His publications have been featured in high-impact journals like JACS, Angewandte Chemie, and ACS Med. Chem. Lett. He was recognized for his contributions to antimicrobial drug discovery, with a cover feature in JACS. His research has been highlighted by the USF Chemistry News and other prestigious scientific platforms. Additionally, he has been invited to speak at international conferences on medicinal chemistry and drug development. His innovative work on peptidomimetic antibiotics has earned funding and collaborative opportunities with global research institutions.

Skills💡

Dr. Teng is a highly skilled chemist with expertise spanning synthetic, medicinal, and bioorganic chemistry. With a strong foundation in organic synthesis, peptide synthesis, and peptidomimetics, they have contributed to the development of novel molecules with therapeutic potential. Their work in medicinal chemistry focuses on drug discovery and structure-activity relationship (SAR) studies, optimizing lead compounds for enhanced efficacy and selectivity. Additionally, their research in bioorganic chemistry involves bioconjugation, enzyme inhibition, and carbohydrate chemistry, facilitating the design of innovative biochemical tools and therapeutics. A key area of interest is protein-protein interactions, where aims to disrupt or modulate critical biological pathways for therapeutic applications. They have also made significant contributions to antimicrobial drug design, working on the development of novel antibiotics and resistance modulators to combat emerging bacterial threats. Their expertise in computational chemistry, including molecular modeling, docking, and structure-based drug design, complements their experimental work by guiding rational drug development strategies, is proficient in a range of analytical techniques, including NMR, mass spectrometry, X-ray crystallography, and HPLC, ensuring precise characterization of chemical and biological entities. With a strong background in leadership and collaboration, they have successfully led interdisciplinary research projects and international partnerships, fostering innovation at the intersection of chemistry and biomedical sciences.

Research Focus 🔬

Dr. Teng’s research focuses on medicinal chemistry, bioorganic chemistry, and drug discovery. He specializes in peptidomimetics, targeting protein-protein interactions for novel therapeutic applications. His work involves developing antimicrobial agents, protein degradation strategies, and carbohydrate-based drug designs. He is particularly interested in addressing bacterial resistance through synthetic small molecules and biomimetic approaches. His research integrates chemical synthesis, biophysical characterization, and molecular modeling to engineer effective therapeutics. His contributions to the field of targeted protein degradation and synthetic foldamers have opened new avenues for precision medicine and next-generation drug development.

Conclusion✅

Dr. Peng Teng is a highly deserving candidate for the Best Researcher Award due to his strong publication record, innovative research, and contributions to drug discovery. While there is room for further impact through commercialization and funding acquisition, his scientific achievements position him as a leading researcher in his field.

Publications Top Notes📚

 

N-Heterocyclic Carbene-Catalyzed Highly Enantioselective Macrolactonization to Access Planar-Chiral Macrocycles

Journal: Organic Letters

Year: 2024

DOI: 10.1021/acs.orglett.3c04200

Rational Design of Sulfonyl-γ-AApeptides as Highly Potent HIV-1 Fusion Inhibitors with Broad-Spectrum Activity

Journal: Journal of Medicinal Chemistry

Year: 2023

DOI: 10.1021/acs.jmedchem.3c01412

Small Molecular Mimetics of Antimicrobial Peptides as a Promising Therapy To Combat Bacterial Resistance

Journal: Journal of Medicinal Chemistry

Year: 2023

DOI: 10.1021/acs.jmedchem.2c00757

The Folding Propensity of α/Sulfono-γ-AA Peptidic Foldamers with Both Left- and Right-Handedness

Journal: Communications Chemistry

Year: 2021

DOI: 10.1038/s42004-021-00496-0

Development of Triantennary N-Acetylgalactosamine Conjugates as Degraders for Extracellular Proteins

Journal: ACS Central Science

Year: 2021

DOI: 10.1021/acscentsci.1c00146

Lipidated α/Sulfono-α-AA Heterogeneous Peptides as Antimicrobial Agents for MRSA

Journal: Bioorganic & Medicinal Chemistry

Year: 2020

DOI: 10.1016/j.bmc.2019.115241

Molecular Architecture and Charging Effects Enhance the In Vitro and In Vivo Performance of Multi‐Arm Antimicrobial Agents Based on Star‐Shaped Poly( l ‐lysine)

Journal: Advanced Therapeutics

Year: 2019

DOI: 10.1002/adtp.201900147

Orthogonal Halogen‐Bonding‐Driven 3D Supramolecular Assembly of Right‐Handed Synthetic Helical Peptides

Journal: Angewandte Chemie

Year: 2019

DOI: 10.1002/ange.201903259

Development of EGFR-targeted Evodiamine Nanoparticles for the Treatment of Colorectal Cancer

Journal: Biomaterials Science

Year: 2019

DOI: 10.1039/c9bm00613c

Nano-Sized Lipidated Dendrimers as Potent and Broad-Spectrum Antibacterial Agents

Journal: Macromolecular Rapid Communications

Year: 2018

DOI: 10.1002/marc.201800622

De Novo Left‐Handed Synthetic Peptidomimetic Foldamers

Journal: Angewandte Chemie

Year: 2018

DOI: 10.1002/anie.201805184

Bis‐Cyclic Guanidines as a Novel Class of Compounds Potent against Clostridium difficile

Journal: ChemMedChem

Year: 2018

DOI: 10.1002/cmdc.201800240

Lipidated α/α-AA Heterogeneous Peptides as Antimicrobial Agents

Journal: European Journal of Medicinal Chemistry

Year: 2018

DOI: 10.1016/j.ejmech.2018.06.006

Selective Inhibition of Leukemia-Associated SHP2E69K Mutant by the Allosteric SHP2 Inhibitor SHP099

Journal: Leukemia

Year: 2018

DOI: 10.1038/s41375-018-0020-5

Hydrogen-Bonding-Driven 3D Supramolecular Assembly of Peptidomimetic Zipper

Journal: Journal of the American Chemical Society

Year: 2018

DOI: 10.1021/jacs.7b11997

Right-Handed Helical Foldamers Consisting of De Novo D‑AApeptides

Journal: Journal of the American Chemical Society

Year: 2017

DOI: 10.1021/jacs.7b03007

Antimicrobial AApeptides

Journal: Current Topics in Medicinal Chemistry

Year: 2017

DOI: 10.2174/1568026616666161018145945

Membrane-Active Hydantoin Derivatives as Antibiotic Agents

Journal: Journal of Medicinal Chemistry

Year: 2017

DOI: 10.1021/acs.jmedchem.7b00847

Novel Bis-Cyclic Guanidines as Potent Membrane-Active Antibacterial Agents with Therapeutic Potential

Journal: Chemical Communications

Year: 2017

DOI: 10.1039/C7CC07285F

γ-AApeptides: Design, Structure, and Applications

Journal: Accounts of Chemical Research

Year: 2016

DOI: 10.1021/acs.accounts.5b00492