Hong Liu | Nanosensors and Actuators | Research Excellence Award

Prof. Hong Liu | Nanosensors and Actuators | Research Excellence Award

Professor | University of Jinan | China

Prof. Hong Liu is a highly influential researcher with an exceptional global impact, reflected by 29,718 Scopus citations, 437 published documents, and an h-index of 84. His research portfolio spans high-impact interdisciplinary areas including advanced bioanalysis, biosensing technologies, nanomaterials, surface patterning strategies, and functional interfaces for diagnostics and analytical systems. He has authored and co-authored numerous landmark journal articles and authoritative review papers in top-tier, high–impact-factor journals, significantly shaping research directions in micro/nano-fabrication, bioanalytical platforms, and sensor integration. His scholarly contributions include pioneering research findings, translational R&D works, and patented innovations that bridge fundamental science with real-world applications. Prof. Hong Liu has played a key role in major collaborative research projects, contributed to influential conference publications and edited volumes, and provided sustained service as a peer reviewer and editorial board member for leading journals. His work is widely recognized for its originality, scientific rigor, and lasting contribution to advancing modern analytical and diagnostic technologies.

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Featured Publications

Zhaohong Su | Nanosensors | Best Researcher Award

Assoc. Prof. Dr. Zhaohong Su | Nanosensors | Best Researcher Award

Doctoral Supervisor at Hunan Agricultural University | China

Assoc. Prof. Dr. Zhaohong Su is a distinguished researcher specializing in electrochemical sensing and functional nanomaterials, with impactful contributions to analytical chemistry, biomedical applications, and environmental monitoring. He earned his academic qualifications in chemistry and materials science and has built a strong career as an academic and innovator. His expertise lies in the design of electrochemical biosensors, functionalized nanostructures, and point-of-care diagnostic devices, advancing rapid and sensitive detection technologies for healthcare and environmental safety. Beyond sensing, his research also extends to energy-related electrochemistry, including electrode materials for batteries and supercapacitors, reflecting his commitment to sustainable and interdisciplinary scientific solutions. As an active scholar, he has published widely, guided students, and contributed significantly to advancing scientific knowledge and technological innovation.

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Education

Assoc. Prof. Dr. Zhaohong Su holds a Ph.D. in Analytical Chemistry from Central South University, China, where he conducted extensive research in electrochemical sensing and nanomaterials. Prior to his doctoral studies, he completed his Master’s and Bachelor’s degrees in Chemistry, establishing a strong academic foundation in chemical sciences and analytical techniques. To broaden his research vision and international exposure, Dr. Su pursued advanced training as a Visiting Scholar at Brown University in the United States, where he engaged in collaborative projects on nanomaterials and intelligent detection systems. This blend of domestic and international education has equipped him with both deep technical expertise and a global research perspective, shaping his career as a prominent scholar in analytical chemistry and sensor technology.

Experience

Assoc. Prof. Dr. Zhaohong Su is currently serving as an Associate Professor at Central South University, China, where he leads research in electrochemical sensing, nanomaterials, and intelligent detection systems. He has accumulated significant academic and research experience through his roles in teaching, supervising graduate students, and conducting interdisciplinary projects in analytical chemistry and material science. His international research exposure includes work as a Visiting Scholar at Brown University, USA, where he collaborated on advanced nanotechnology and biosensing projects. Over the years, Dr. Su has built an extensive research portfolio, authored numerous scientific publications, and contributed actively to the development of innovative analytical methods and detection technologies, strengthening his reputation as a leading scholar in his field.

Research Interests

Assoc. Prof. Dr. Zhaohong Su research interests center on the development of advanced electrochemical sensing platforms and the design of functional nanomaterials for analytical and biomedical applications. His work emphasizes electrochemical biosensors for the detection of biomolecules, drugs, and environmental pollutants, alongside the functionalization of nanostructures such as carbon-based materials, nanoparticles, and hybrid composites. He is also deeply engaged in creating innovative point of care diagnostic devices that enable rapid, sensitive, and selective detection, bridging chemistry, materials science, and engineering. In addition, his research extends to energy-related electrochemistry, particularly electrode materials for batteries and supercapacitors, as well as the advancement of green and sustainable sensing technologies aimed at healthcare and environmental monitoring.

Publications

Hierarchical all-carbon nanozyme architectures for enhanced intelligent rutin detection

Cited: 4

In-situ reshaping nano-biochar on electrode surface for machine learning assisted selective sensing of Pb2+ in real water samples

Cited: 6

Facile one-pot synthesis of triethanolamine-functionalized AuNPs-GO-UiO-66-NH2 nanocomposites for simultaneous electrochemical detection of Cd(II), Pb(II), and Cu(II)

Cited: 4

A smart portable electrochemical sensor based on electrodeposited ferrocene-functionalized multiwalled carbon nanotubes for in vitro and in vivo detection of nicotine in tobacco samples

Cited: 10

Conclusion

Assoc. Prof. Dr. Zhaohong Su impressive record of scholarly contributions, patents, and recognition makes him a strong candidate for the Best Researcher Award. His pioneering work in electrochemical sensing and nanomaterials demonstrates both academic rigor and practical relevance, contributing to advancements in environmental and health-related applications. With continued efforts to strengthen global collaborations and industrial partnerships, Dr. Su’s research impact will expand even further, positioning him as a leading figure in his field. He is highly deserving of this award in recognition of his innovative achievements and dedication to advancing science and technology.

 

Yingchun Li | Nanosensors | Best Researcher Award

Prof. Dr. Yingchun Li | Nanosensors | Best Researcher Award

Vice Dean of BME school at Harbin Institute of Technology (Shenzhen) | China

Prof. Dr. Yingchun Li is an accomplished independent principal investigator at Harbin Institute of Technology (Shenzhen), with a strong academic foundation earned from top universities in China and Germany. Her research group has pioneered a suite of highly sensitive analytical devices and materials, leveraging techniques such as electrochemistry, photoelectrochemistry, electrochemiluminescence, colorimetry, and microfluidics. These innovations have found practical applications across biomedicine, drug development, pharmaceutical quality control, food safety, and environmental monitoring. With a prolific scholarly output and numerous national invention patents, Prof. Li is recognized as a visionary leader in the field of biochemical analysis.

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Education

Prof. Dr. Yingchun Li built a strong academic foundation by earning a Bachelor of Science degree from Shihezi University, followed by a Master of Science from Xi’an Jiaotong University. She then pursued doctoral studies at a university in Germany, where the Ph.D. laid the groundwork for her future research career. Currently, as an independent principal investigator at Harbin Institute of Technology in Shenzhen, Prof. Li leverages her diverse educational background to lead innovative work in biochemical analysis and analytical device development.

Experience

Prof. Dr. Yingchun Li currently leads an independent research group as a Principal Investigator at Harbin Institute of Technology in Shenzhen, where the work focuses on pioneering analytical devices and materials for biochemical and clinical applications. This position reflects a sustained commitment to bridging material science with real-world healthcare needs. Previously, the academic journey included international doctoral training in Germany—an experience that enriched the foundational skills guiding the current research trajectory. The research program emphasizes interdisciplinary innovation, translating core expertise in electrochemistry, microfluidics, and related technologies into tools for industries such as pharmaceuticals, environmental monitoring, and food safety, showcasing a strong blend of academic leadership and applied research.

Research Interests

Prof. Dr. Yingchun Li specializes in the development of high-performance analytical platforms, spanning chem/bio-sensors and soft, bio-integrated electronic devices. The research focuses on leveraging advanced techniques such as electrochemistry, photoelectrochemistry, electrochemiluminescence, colorimetry, and microfluidics to create sensitive, selective, and rapid diagnostic tools. These innovations have practical applications across diverse areas including biomedicine, environmental monitoring, food safety, drug screening, and toxicity assessment demonstrating a strong emphasis on translational science and real-world impact.

Publications

Prolonged monitoring and risk management of hyperuricemia using interference-resistant wearable bioelectronics

Cited: 4

Enhanced chemiluminescence of luminol via In2S3/MXene composite as a novel Co-reactant accelerator for UV-filter Benzophenone-3 determination

Cited: 1

Integrated Microneedles and Hydrogel Biosensor Platform: Toward a Diagnostic Device for Collection and Dual-Mode Sensing of Monkeypox Virus A29 Protein

Cited: 3

Microneedle-Based Electrochemical Array Patch for Ultra-Antifouling and Ultra-Anti-Interference Monitoring of Subcutaneous Oxygen

Cited: 2

Exonuclease III/Cas12a Cascade Amplification Strategy and Smartphone-Based Portable Fluorescence Detector to Repurpose the Commercial AFP Strip for the POCT of Multiple RNAs

Cited: 6

Conclusion

Prof. Dr. Yingchun Li’s exemplary research record, innovative contributions in biosensing and analytical technologies, and consistent recognition through prestigious honors position her as a highly deserving candidate for the Best Researcher Award. Her work addresses critical global challenges with advanced, practical solutions, embodying the qualities of a visionary scientist whose contributions have significant and lasting impact.

 

 

QinghuaWei |Nanosensors and Actuators | Best Researcher Award

Assoc. Prof. Dr. Qinghua Wei | Nanosensors and Actuators | Best Researcher Award

Associate Professor at Northwestern Polytechnical University, China

Dr. Qinghua Wei, a distinguished Doctor of Engineering and doctoral supervisor, is recognized for his pioneering research in composite materials and biological additive manufacturing. As a recipient of the “Aerospace New Star” award from Northwestern Polytechnical University, he has led over ten major national projects and authored more than 80 high-impact publications, with over 1,600 SCI citations. His innovations have yielded 23 national patents, nine of which have been successfully commercialized, and ten software copyrights. Dr. Wei’s outstanding contributions have earned him prestigious honors, including the First Prize of the National Technology Invention Award and multiple provincial science and technology awards. His interdisciplinary work integrates materials science, 3D bioprinting, and biomedical engineering, with significant translational value. Listed among the world’s top 2% scientists by Stanford University, Dr. Wei exemplifies research excellence and innovation, with a commitment to advancing scientific knowledge and nurturing future scholars in advanced manufacturing and biomaterials.

Professional Profile 

Scopus Profile

Education

Dr. Qinghua Wei holds a Doctorate in Engineering, which has laid the foundation for his extensive academic and research career. His educational journey reflects a solid grounding in materials science, mechanical engineering, and manufacturing technologies. His doctoral training equipped him with the theoretical knowledge and practical skills necessary to address complex problems in composite material design and additive manufacturing. Through rigorous academic preparation, Dr. Wei developed a keen interest in integrating multiple disciplines such as biomaterials, mechanics, and process engineering. His academic background also provided the platform for his future role as a doctoral supervisor, mentoring graduate students and guiding innovative research projects. His education has not only shaped his technical capabilities but also cultivated his analytical thinking and leadership qualities, enabling him to lead national-level projects and secure recognition within the scientific community. His commitment to lifelong learning continues to inform his work in advanced manufacturing and biomedical applications.

Professional Experience

Dr. Qinghua Wei is a seasoned researcher and doctoral supervisor at Northwestern Polytechnical University, where he also earned recognition through the “Aerospace New Star” science and technology talent program. Over the course of his career, he has led more than ten high-level research projects, including those funded by the National Natural Science Foundation of China and the State Key Research and Development Program. His responsibilities extend beyond research to include project management, academic mentorship, and technology transfer. Dr. Wei has an impressive track record of publishing over 80 peer-reviewed articles and two academic monographs, which have earned wide citation and acclaim. He has also played a pivotal role in translating research into practice, with 23 national invention patents—nine of which have been successfully commercialized. His experience reflects a balanced integration of scientific inquiry, educational mentorship, and innovation-driven entrepreneurship, positioning him as a thought leader in additive manufacturing and materials science.

Research Interest

Dr. Qinghua Wei’s research interests lie at the intersection of composite materials, 3D bioprinting, and biomedical manufacturing. His work focuses on the multi-scale design and functional modification of composite materials for high-performance applications. A major area of emphasis is the development of biological additive manufacturing technologies, including novel bio-inks, smart hydrogels, and multi-material extrusion systems for 3D printing. He has contributed significantly to tissue engineering, particularly in the fabrication of bone scaffolds, skin substitutes, and soft tissue constructs using biocompatible hydrogels. His work also explores the optimization of printing parameters through numerical modeling and simulation, ensuring both structural integrity and cell viability. By integrating mechanical design, material science, and bological systems, Dr. Wei is pioneering advanced solutions with both clinical and industrial relevance. His interdisciplinary research not only advances fundamental science but also offers practical tools and technologies that address challenges in healthcare, aerospace, and precision manufacturing.

Award and Honor

Dr. Qinghua Wei has received numerous awards and honors that underscore his contributions to science and technology. Most notably, he was awarded the First Prize of the National Technology Invention Award in 2019, a prestigious national recognition of groundbreaking research with significant impact. He has also received the Second Prize of the Shaanxi Provincial Natural Science Award (2024) and the First Prize of the Shaanxi Provincial University Science and Technology Award in 2024, 2020, and 2016, demonstrating sustained excellence over the years. In 2023, his research was evaluated as qualified by the International Association for Science and Technology Promotion of China. Furthermore, his scientific output has earned him a place in Stanford University’s list of the world’s top 2% scientists, reflecting both national and international acknowledgment. These honors affirm Dr. Wei’s leadership in his field and validate the relevance, originality, and societal value of his research contributions.

Conclusion

In summary, Dr. Qinghua Wei is an accomplished researcher whose academic rigor, innovative spirit, and translational impact make him a standout figure in engineering and applied sciences. With a solid educational foundation, extensive project leadership, and cutting-edge interdisciplinary research, he bridges theory and real-world application in fields such as composite materials and 3D bioprinting. His work has led to high-impact publications, patent commercialization, and influential collaborations, reflecting both depth and breadth in his expertise. Dr. Wei’s career is marked by a consistent trajectory of excellence, as evidenced by prestigious national awards and global scientific recognition. As a mentor, inventor, and thought leader, he continues to shape the future of advanced manufacturing and biomedical engineering. His accomplishments not only enhance academic knowledge but also contribute to technological innovation with societal benefits. Dr. Wei is undoubtedly a strong candidate for major research accolades and an exemplar of excellence in modern engineering research.

Publications Top Notes

  • Title: A triple-network PVA/cellulose nanofiber composite hydrogel with excellent strength, transparency, conductivity, and antibacterial properties

    • Authors: Li, Mingyang; Wang, Yanen; Wei, Qinghua; Liu, Zhisheng

    • Year: 2025

  • Title: 3D printing of microstructured polyacrylamide/sodium alginate/lithium chloride composite hydrogels for nanofriction generator and e-skin

    • Authors: Chen, Xiaohu; Wang, Qinglin; Ma, Shuai; Xu, Yan; Wang, Yanen

    • Year: 2025

    • Citations: 1

  • Title: Investigation of wet-heat coupling and hygroscopic behavior of moso bamboo

    • Authors: Hong, Qi; Wei, Qinghua; Lan, Xianwei; Yuan, Jing

    • Year: 2025

  • Title: Optimal design of multi-biomaterials mixed extrusion nozzle for 3D bioprinting considering cell activity

    • Authors: Wei, Qinghua; An, Yalong; Zhao, Xudong; Zhang, Juan; Cui, Ning

    • Year: 2025

  • Title: Influence of particle size distribution on hydroxyapatite slurry and scaffold properties fabricated using digital light processing

    • Authors: Liu, Minyan; Wang, Yanen; Zhang, Haonan; Liu, Zhisheng; Liu, Xiaowu

    • Year: 2024

    • Citations: 3

  • Title: Research on the flow behavior of bio-ink inside the extrusion nozzle during printing

    • Authors: Wei, Qinghua; An, Yalong; Li, Mingyang; Zhao, Xudong

    • Year: 2024

  • Title: Optimization of hydrogel extrusion printing process parameters based on numerical simulation

    • Authors: Wei, Qinghua; Li, Mingyang; An, Yalong; Zhao, Xudong; Sun, Daocen

    • Year: 2024

Prof. Dr. Wilian Paul Arévalo Cordero | Nanosensors Awards | Best Researcher Award

Prof. Dr. Wilian Paul Arévalo Cordero | Nanosensors Awards | Best Researcher Award

Prof. Dr. Wilian Paul Arévalo Cordero , Universidad de Cuenca , Ecuador

Wilian Paul Arévalo Cordero is an accomplished Electrical Engineer from the University of Cuenca, Ecuador, where he graduated in 2015, specializing in Power Systems and Control. He furthered his studies with a Master’s in Renewable Energy Management from Universidad Rey Juan Carlos and another Master’s in Renewable Energy from the University of Jaén, Spain. He completed his Ph.D. in Advances in Materials Engineering and Sustainable Energies at the University of Jaén in February 2021. Dr. Arévalo Cordero is a postdoctoral researcher at the University of Jaén, focusing on renewable energies, energy control, and sustainable public transport. His professional background includes roles as a Supervisor of Operations at Corporación Eléctrica del Ecuador and as a Junior Engineer in Instrumentation and Control at SNC Lavalin International. His research and experience span industrial control, electronics, and hydroelectric plant operations.

Professional Profile:

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🎓Education:

Wilian Paul Arévalo Cordero holds a Doctor of Philosophy (Ph.D.) in Advances in Materials Engineering and Sustainable Energies, which he completed in February 2021 at the University of Jaén, Spain. He also earned a Master’s in Renewable Energy from the University of Jaén in 2017 and a Master’s in Renewable Energy Management from Universidad Rey Juan Carlos, Spain, in 2016. His academic journey began with a Bachelor’s Degree in Electrical Engineering, which he received from the University of Cuenca, Ecuador, in 2015.

🏢Work Experience:

Wilian Paul Arévalo Cordero is currently a Postdoctoral Researcher at the University of Jaén, Spain, where he has been conducting advanced research on renewable energies, energy control, and sustainable public transport since May 2022. In addition to his postdoctoral role, he has been a Research Scientist at the same university since November 2017, focusing on scientific research and project development in electrical engineering. Prior to his academic roles, Wilian served as a Supervisor of Operations at Corporación Eléctrica del Ecuador (CELEC SUR) from February 2018, managing operations at a hydroelectric plant and ensuring efficient energy production. He also held the position of Senior Electrical Works Supervisor at CELEC from November 2015 to October 2016, where he supervised electrical works and project implementation. His early career included working as a Junior Engineer in Instrumentation and Control at SNC Lavalin International in Quebec, Canada, from May to October 2015, where he contributed to instrumentation and control systems for various projects.

Publication Top Notes: