Jianfei Sun | Biosensing and Bioimaging | Best Researcher Award

Prof. Jianfei Sun | Biosensing and Bioimaging | Best Researcher Award

Southeast University | China

Publication Profile:

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👨‍🎓 Summary:

Prof. Jianfei Sun is a distinguished researcher and doctoral supervisor at Southeast University, China. He specializes in magnetic nanomaterials for medicine and electromagnetic therapy. As the director of the Jiangsu Key Laboratory of Biomaterials and Devices, he has pioneered methods for overcoming depth limitations in medical treatments using magnetic stimulation. With over 90 academic papers and 9 invention patents, Prof. Sun’s work has contributed significantly to both scientific advancements and technology transfer.

🎓 Education:

Prof. Sun holds a doctoral degree in a relevant field and has completed extensive research in biomaterials and electromagnetic therapies.

💼 Professional Experience:

Prof. Sun has a notable academic career at Southeast University, where he supervises doctoral students and leads cutting-edge research in biomedical engineering. His work focuses on developing advanced magnetic nanomaterials for medical applications and their integration into clinical therapies.

📚 Academic Citations:

Prof. Sun has authored over 90 papers published in renowned academic journals, including key publications in Zoological Research, ACS Applied Materials & Interfaces, and Applied Physics A. His research has been widely cited, making a significant impact in the field of medical magnetism.

🛠️ Technical Skills:

  • Magnetic Nanomaterial Synthesis

  • Electromagnetic Therapy Development

  • Precision Magnetic Stimulation

  • Biomaterial Application in Medicine

  • Patented Technology in Nanotechnology

👨‍🏫 Teaching Experience:

Prof. Sun has contributed to academia as a doctoral supervisor at Southeast University, mentoring students in the fields of biomaterials, nanotechnology, and medical engineering.

🔬 Research Interests:

His research is centered on the application of magnetic nanomaterials in medicine, particularly in electromagnetic therapies for neurological diseases. Prof. Sun’s pioneering work includes precision magnetic stimulation methods and nano-iron oxide materials used for therapeutic purposes.

📚 Top Notes Publications:

Co-seismic ruptures of the 12 May 2008, Ms 8.0 Wenchuan earthquake, Sichuan: East–west crustal shortening on oblique, parallel thrusts along the eastern edge of Tibet
    • Authors: J Liu-Zeng, Z Zhang, L Wen, P Tapponnier, J Sun, X Xing, G Hu, Q Xu, …

    • Journal: Earth and Planetary Science Letters

    • Year: 2009

Response of MAPK pathway to iron oxide nanoparticles in vitro treatment promotes osteogenic differentiation of hBMSCs
    • Authors: Q Wang, B Chen, M Cao, J Sun, H Wu, P Zhao, J Xing, Y Yang, X Zhang, …

    • Journal: Biomaterials

    • Year: 2016

Magnetic field and nano-scaffolds with stem cells to enhance bone regeneration
    • Authors: Y Xia, J Sun, L Zhao, F Zhang, XJ Liang, Y Guo, MD Weir, MA Reynolds, …

    • Journal: Biomaterials

    • Year: 2018

A novel magnetic hydrogel with aligned magnetic colloidal assemblies showing controllable enhancement of magnetothermal effect in the presence of alternating magnetic field
    • Authors: K Hu, J Sun, Z Guo, P Wang, Q Chen, M Ma, N Gu

    • Journal: Advanced Materials

    • Year: 2015

Effect of drip irrigation on strawberry growth and yield inside a plastic greenhouse
    • Authors: BZ Yuan, J Sun, S Nishiyama

    • Journal: Biosystems Engineering

    • Year: 2004

Tacrine–ferulic acid–nitric oxide (NO) donor trihybrids as potent, multifunctional acetyl-and butyrylcholinesterase inhibitors
    • Authors: Y Chen, J Sun, L Fang, M Liu, S Peng, H Liao, J Lehmann, Y Zhang

    • Journal: Journal of Medicinal Chemistry

    • Year: 2012

Suman Mandal | Emerging Research Trends | Best Researcher Award

Dr. Suman Mandal | Emerging Research Trends | Best Researcher Award

King Abdullah University of Science and Technology (KAUST) | Saudi Arabia

PUBLICATION PROFILE

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Assoc Prof Dr. Osman Bulut⚡🌍

INTRODUCTION 🌟

Dr. Suman Mandal is a renowned postdoctoral fellow at King Abdullah University of Science and Technology (KAUST) in Saudi Arabia. With a background in physics and extensive experience in the field of organic electronics, Dr. Mandal has contributed significantly to the advancement of low-power organic electronic devices, particularly in healthcare applications. His work spans a wide range of areas, from device fabrication to sensing technologies, with several groundbreaking patents and research articles to his name. Through collaborations with prestigious institutions like the Indian Institute of Technology Kharagpur (IIT KGP), University College London (UCL), and KAUST, Dr. Mandal has earned a solid reputation for his expertise in both theoretical and practical aspects of physical sciences.

EARLY ACADEMIC PURSUITS 📚

Dr. Mandal’s academic journey began at The University of Burdwan, where he completed his B.Sc. in Physics (2009-2012). His passion for physics led him to pursue an M.Sc. at IIT Kharagpur, where he conducted research on the critical behavior of ferromagnetic alloys under the guidance of Prof. Tapan Kumar Nath. His academic excellence and commitment to research were recognized through several prestigious scholarships, including the DST Inspire Scholarship. Dr. Mandal then pursued his Ph.D. at IIT Kharagpur, working under the supervision of Prof. Dipak Kumar Goswami. His doctoral research focused on the fabrication and characterization of polymer-based low-power organic electronic devices for healthcare applications, which laid the foundation for his later contributions to the field.

PROFESSIONAL ENDEAVORS 💼

Dr. Mandal’s professional journey took him to multiple esteemed research institutions. He worked as a Research Assistant (RA) at University College London (UCL) and later as a Research Associate at IIT Kharagpur. In 2021, Dr. Mandal joined KAUST as a postdoctoral fellow, where he is currently involved in cutting-edge research in organic electronics, particularly in the development of organic sensors for health-related applications. His work involves utilizing organic materials for developing energy-efficient, high-performance electronic devices that serve a variety of applications in healthcare and energy storage.

CONTRIBUTIONS AND RESEARCH FOCUS ON Emerging Research Trends 🔬

Dr. Mandal’s research contributions primarily focus on developing low-power, high-performance organic electronics, specifically for healthcare applications. His work on organic field-effect transistors (OFETs) has led to innovative solutions in the development of sensors for humidity, temperature, and hydrogen detection. His most recent patent on organic hydrogen sensors is a testament to his ongoing commitment to expanding the application of organic electronics. He has also contributed significantly to the development of polymer nanocomposites for energy storage applications, demonstrating his expertise in both sensor technologies and energy storage systems.

IMPACT AND INFLUENCE 🌍

Dr. Mandal’s research has significantly influenced the field of organic electronics. His work on flexible and low-power OFET-based sensors has the potential to revolutionize healthcare monitoring by providing efficient, affordable, and non-invasive solutions for detecting environmental changes such as humidity and temperature. Through his presentations and collaborations at various international conferences, Dr. Mandal has shared his expertise with the global scientific community, making lasting contributions to the advancement of materials science, nanotechnology, and electronic devices.

ACADEMIC CITATIONS AND PUBLICATIONS 📑

Dr. Mandal has published extensively in top-tier journals, with 20 publications to his name, 8 of which are as the first author. His work has garnered significant attention in the scientific community, accumulating 471 citations, with an h-index and i10-index of 13, underscoring the impact of his research. Furthermore, he has filed two patents, with one granted on an organic field-effect transistor-based temperature sensor for medical applications. His work has been instrumental in advancing the understanding of organic semiconductors and their applications in environmental and healthcare technologies.

HONORS & AWARDS 🏆

Dr. Mandal’s academic achievements have been recognized through numerous honors and awards. These include the prestigious INSPIRE Scholarship funded by the Department of Science & Technology (DST) during his undergraduate and postgraduate studies, as well as several travel grants to attend international conferences in places such as France, Switzerland, and Japan. He was also the recipient of the ACS Oral Presentation Award in 2020 and the Best Poster Award at the International Workshop on Physics of Semiconductor Devices in 2023.

LEGACY AND FUTURE CONTRIBUTIONS HIGHLIGHT 🔮

Looking forward, Dr. Mandal’s future contributions are poised to have a lasting legacy in the fields of organic electronics and healthcare technology. With continued innovation in sensor devices and energy storage materials, his work will likely play a central role in the development of next-generation technologies for smart healthcare solutions and sustainable energy systems. His legacy will inspire future generations of scientists to explore the potential of organic materials in emerging technologies, ultimately benefiting society by providing more efficient, affordable, and sustainable solutions.

FINAL NOTE ✨

Dr. Suman Mandal is an exceptional researcher whose contributions to the field of organic electronics are transforming the way we approach healthcare monitoring and environmental sensing. With a solid academic background, an extensive publication record, and significant patent contributions, Dr. Mandal’s work continues to impact both academia and industry. As he moves forward in his career, his ongoing research at KAUST promises to further revolutionize the applications of organic electronics in a variety of fields.

TOP NOTES PUBLICATIONS 📚

A robust organic hydrogen sensor for distributed monitoring applications
    • Authors: Suman Mandal, Adam V. Marsh, Hendrik Faber, Tanmay Ghoshal, Dipak Kumar Goswami, Leonidas Tsetseris, Martin Heeney, Thomas D. Anthopoulos
    • Journal: Nature Electronics
    • Year: 2025
Ultra‐Fast Moisture Sensor for Respiratory Cycle Monitoring and Non‐Contact Sensing Applications
    • Authors: Suman Mandal, Harold Mazo Mantilla, Kalaivanan Loganathan, Hendrik Faber, Abhinav Sharma, Murali Gedda, Emre Yengel, Dipak Kumar Goswami, Martin Heeney, Thomas D. Anthopoulos
    • Journal: Advanced Materials
    • Year: 2025
Transition of Activation Energy Induced by the Polarization of Au Nanoparticles in Organic Field-Effect Transistors at Low Temperatures
    • Authors: Samik Mallik, Ajoy Mandal, Suman Mandal, Shiv Prakash Verma, Abhirup Das, Prasanta Kumar Guha, Dipak K. Goswami
    • Journal: ACS Applied Nano Materials
    • Year: 2024
Diffusion-Induced Thickness Thinning of Spin-Coated Films in Crystalline Grain Boundaries: A Process of Amorphization
    • Authors: Mandal, A.; Mandal, S.; Verma, S.P.; Mallik, S.; Bag, S.S.; Goswami, D.K.
    • Journal: Advanced Materials Interfaces
    • Year: 2023
Non-invasive, ultrasensitive detection of glucose in saliva using metal oxide transistors
    • Authors: Sharma, A.; AlGhamdi, W.S.; Faber, H.; Lin, Y.-H.; Liu, C.-H.; Hsu, E.-K.; Lin, W.-Z.; Naphade, D.; Mandal, S.; Heeney, M. et al.
    • Journal: Biosensors and Bioelectronics
    • Year: 2023

Hao Gao | Healthcare Data Analysis | Best Researcher Award

Prof. Hao Gao | Healthcare Data Analysis | Best Researcher Award

Jinan University, China

Author Profiles

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👨‍🎓 Early Academic Pursuits

Prof. Hao Gao began his academic journey with a strong foundation in natural medicine chemistry. He received his PhD from Shenyang Pharmaceutical University in 2005, focusing on the chemistry of natural medicines. This early academic work set the stage for his future contributions to the field of Traditional Chinese Medicine (TCM). After completing his doctorate, he further honed his expertise through postdoctoral training at Tsinghua University (2006-2008), a renowned institution that significantly influenced his approach to scientific research and innovation.

💼 Professional Endeavors and Leadership

Prof. Gao’s professional trajectory has been marked by leadership roles that have shaped his career and the direction of his research. In 2008, he joined the Institute of Traditional Chinese Medicine & Natural Products at Jinan University as a faculty member. Since 2013, he has been a professor at the university and, in 2016, assumed the position of Head of the Institute of Traditional Chinese Medicine & Natural Products. In 2020, he expanded his administrative responsibilities by taking on the role of Director of the Science and Technology Department at Jinan University. Prof. Gao’s leadership has been pivotal in fostering multidisciplinary collaborations and advancing research initiatives in natural medicine chemistry.

🔬 Contributions and Research Focus

Prof. Gao’s research is primarily centered on natural medicine chemistry, with a particular focus on the active compounds and technological advancements related to Traditional Chinese Medicine (TCM). His work is dedicated to exploring under-researched medicinal materials like Lycium barbarum, Angelica sinensis, and Ophiocordyceps sinensis, which are central to TCM practices. Prof. Gao has made significant strides in identifying bioactive substances and developing novel drugs derived from TCM. Notably, his research has led to the discovery of four classes of lead compounds for anti-dementia drugs, all characterized by independent intellectual property rights.

🌍 Impact and Influence

Prof. Gao’s impact extends beyond academia, with substantial contributions to the modernization of TCM and drug development. His collaborations with international experts, such as Professor Ikuro Abe from the University of Tokyo, have facilitated the establishment of the International Cooperative Laboratory of Traditional Chinese Medicine Modernization and Innovative Drug Development, a joint initiative between China’s Ministry of Education and Jinan University. This partnership exemplifies Prof. Gao’s influence on global TCM research and highlights his role in pushing the boundaries of natural product-based drug development.

📚 Academic Citations and Recognition

Prof. Gao’s research has gained widespread recognition, reflected in his 4100 citations across various SCI journals. His work has significantly contributed to the advancement of natural medicine chemistry and TCM, making him a highly influential figure in the field. His numerous publications, with 195 journal articles and one book published, continue to shape research in TCM and pharmacology. Moreover, his leadership as an editor for the China Section of the Journal of Natural Medicines and as an editorial board member for Acta Pharmaceutica Sinica B highlights his prominence in the academic community.

🛠️ Technical Skills and Innovations

Prof. Gao’s technical expertise spans various critical areas, including the extraction, isolation, and characterization of bioactive compounds from TCM. His innovations in pharmacodynamic constituents of TCM have contributed to the discovery of novel drug candidates, some of which are in the process of patenting. With over 71 patents published or pending, Prof. Gao stands at the forefront of translating TCM practices into scientifically validated therapeutic solutions. His lab continues to focus on critical technologies that aim to enhance the efficacy and safety of TCM-derived medicines.

👩‍🏫 Teaching Experience

In addition to his research, Prof. Gao has been an integral part of the academic community at Jinan University, mentoring and guiding students in the fields of pharmacology and natural medicine chemistry. His teaching philosophy integrates cutting-edge research with practical applications in TCM, ensuring that his students are well-equipped to pursue careers in both academia and industry. As a mentor, Prof. Gao has inspired numerous graduate students and postdoctoral researchers, many of whom have gone on to make their own contributions to TCM and drug development.

🌱 Legacy and Future Contributions

Prof. Gao’s legacy is built on his pioneering work in natural medicine chemistry and the modernization of Traditional Chinese Medicine. His research continues to influence the field, with ongoing projects that promise to uncover more bioactive compounds and therapeutic agents. As his career progresses, Prof. Gao remains committed to advancing TCM through innovation and interdisciplinary collaboration. His future work will likely expand the global recognition of TCM-based drugs, pushing the boundaries of natural product drug discovery and pharmacology for the betterment of human health.

🌟 Professional Memberships and Editorial Roles

Prof. Gao is an active member of the China Association of Chinese Medicine, where he serves as Vice Chairperson of the Youth Work Committee. His role in professional societies and editorial boards, including his editorial positions in high-impact journals, underscores his authority in the fields of natural products and biosynthesis. His leadership extends to guiding the next generation of researchers and practitioners in these fields.

📖 Top Noted Publications 

Functional and structural dissection of glycosyltransferases underlying the glycodiversity of wolfberry-derived bioactive ingredients lycibarbarspermidines
    • Authors: Li, S.-Y., Wang, G.-Q., Long, L., Abe, I., Gao, H.
    • Journal: Nature Communications
    • Year: 2024
Identification of three novel P450 enzymes involved in the oxidative modification of a newly discovered fusicoccane diterpene
    • Authors: Dong, L., Liu, J.-Y., Wang, G.-Q., Hu, D., Gao, H.
    • Journal: Bioorganic Chemistry
    • Year: 2024
Targeted Discovery of a Natural ortho-Quinone Methide Precursor and Green Generation of Its Oligomers
    • Authors: Wang, X.-X., Deng, B.-Q., Ouyang, Z.-Q., Yao, X.-S., Gao, H.
    • Journal: Journal of Natural Products
    • Year: 2024
A Functional Switch Between Asperfumene and Fusicoccadiene Synthase and Entrance to Asperfumene Biosynthesis through a Vicinal Deprotonation-Reprotonation Process
    • Authors: Liu, J.-Y., Lin, F.-L., Taizoumbe, K.A., Gao, H., Dickschat, J.S.
    • Journal: Angewandte Chemie – International Edition
    • Year: 2024
Mechanistic characterisation of a fungal fusicoccane-type diterpene synthase involved in the biosynthesis of talaro-7,13-diene
    • Authors: Lin, F.-L., Taizoumbe, K.A., Wang, Y.-X., Gao, H., Dickschat, J.S.
    • Journal: Organic and Biomolecular Chemistry
    • Year: 2024

Pushpa-Medical Image Processing, Biomedical Engineering-Best Researcher Award

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Early Academic Pursuits

Mrs. Pushpa B embarked on her academic journey with a Bachelor's in Electronics and Instrumentation from St. Peter’s Engineering College, affiliated with Anna University, in 2007. Her dedication to the field was evident as she secured a commendable 73%. Building upon this foundation, she pursued an M.Tech in Electronics and Control from SRM University, Chennai, where she achieved a CGPA of 6.99 in 2010. The continuous academic excellence led her to undertake an MBA in Health Service Management from Anna University in 2023. Currently, she is on the verge of completing her Ph.D. in Medical Image Processing & Artificial Intelligence from Annamalai University, with her thesis submitted.

Professional Endeavors

With an illustrious academic background, Mrs. Pushpa B transitioned into academia, where she has made significant contributions. She held the position of Assistant Professor in various esteemed institutions such as B.S. Abdur Rahman Crescent Institute of Science and Technology and Velammal Institute of Technology. During her tenure, she shouldered numerous responsibilities, including curriculum development, university department audit coordination, and acting as a placement coordinator.

Contributions and Research Focus

Mrs. Pushpa B's expertise spans across diverse fields, including Analog Electronic Circuits, Digital Signal Processing, Machine Learning, and more. Her research primarily revolves around Medical Image Processing, Artificial Intelligence, and Bio-medical Instrumentation. Notably, she has undertaken projects like "Detection of Startle Type Epilepsy using Machine Learning Technique" at Global Medical Hospital, Chennai. Her research is widely recognized, with numerous international and national publications and conference presentations to her credit.

Accolades and Recognition

Mrs. Pushpa B's contributions to the academic and research communities have garnered her several accolades. She has published patents, notably one on "Intelligent estimation of liver fat and its stages by using DICOM." Furthermore, her publications in renowned journals like Technology and Health Care and Measurement Sensors, among others, testify to her expertise and recognition in her field.

Impact and Influence

Mrs. Pushpa B's influence extends beyond her academic and research endeavors. She has organized workshops, training programs, and conferences that have facilitated knowledge dissemination and skill enhancement for students, faculty, and industry professionals alike. Her expertise as a reviewer for esteemed platforms like Taylor & FrancisOnline, Elsevier, and IEEE Xplore further amplifies her impact in the scholarly community.

Legacy and Future Contributions

As a dedicated academician and researcher, Mrs. Pushpa B's legacy is marked by her commitment to advancing knowledge in her specialized domains. Her future contributions are anticipated to further bridge the gap between technology and healthcare, particularly in leveraging AI and machine learning techniques for enhanced medical diagnostics and treatments. With her relentless pursuit of excellence, she is poised to inspire future generations of researchers and academicians in the realms of Medical Image Processing and Artificial Intelligence.

In conclusion, Mrs. Pushpa B's academic pursuits, professional endeavors, and contributions to the field of Medical Image Processing and Artificial Intelligence stand as a testament to her passion, expertise, and commitment. Her multifaceted accomplishments underscore her potential to drive significant advancements and make lasting contributions to academia and healthcare.

NOTABLE PUBLICATION