Subhash Chandra Yadav | Point of Care Testing | Research Excellence Award

Prof. Dr. Subhash Chandra Yadav | Point of Care Testing | Research Excellence Award

Professor | AIIMS New Delhi | India

Dr. Subhash Chandra Yadav is a research-focused scientist with significant contributions to advanced electron microscopy, nanotechnology, and nano-enabled diagnostics. His scholarly output reflects sustained impact across interdisciplinary biomedical research, supported by 5,036 citations, 47 peer-reviewed documents, and an h-index of 16. His research emphasizes ultrastructural imaging, cryo-electron tomography, and the development of cost-effective nanodiagnostic platforms for infectious diseases and cancer detection. He has led and contributed to studies advancing visual nano-detection systems, nanoparticle-based drug delivery, and virus–host interaction analysis at near-native resolution. His work bridges fundamental nanoscale science with translational diagnostics, enabling scalable and clinically relevant innovations. Through consistent publication in high-impact journals and collaborative research initiatives, his contributions have strengthened the application of nanomedicine and microscopy-driven diagnostics, positioning his research as a valuable resource for advancing precision diagnostics and therapeutic strategies in modern biomedical science.

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Featured Publications

Xiangli Li | Artificial Intelligence in Diagnostics | Excellence in Research Award

Dr. Xiangli Li | Artificial Intelligence in Diagnostics | Excellence in Research Award

Doctoral Student | Wuhan University | China

Dr. Xiangli Li is a research-focused scientist specializing in artificial intelligence–driven medical image analysis and multimodal clinical data interpretation. The research portfolio comprises 26 citations, an h-index of 3, and 8 peer-reviewed research documents published in indexed journals and conference proceedings. Scholarly work emphasizes deep learning, computer vision, and multimodal neural network architectures applied to diagnostic pathology, with particular impact in thyroid cytology classification and decision-support systems. Publications demonstrate consistent contributions to translational medical AI, advancing accuracy, robustness, and clinical relevance of computational models. The research output reflects steady citation growth, interdisciplinary relevance, and measurable scientific influence within medical informatics and applied artificial intelligence. Collectively, these works contribute to evidence-based diagnostic innovation, strengthening the integration of advanced AI methodologies into modern biomedical research and clinical practice.

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Featured Publications

Fan Ren | Point-of-Care Testing | Best Researcher Award

Prof. Fan Ren | Point-of-Care Testing | Best Researcher Award

Fan Ren | University of Florida | United States

Dr. Fan Ren is an internationally distinguished researcher whose pioneering contributions have profoundly shaped the fields of semiconductor device engineering, wide-bandgap materials, and electronic sensor technologies. With an exceptional scholarly impact reflected in 63,712 citations, an h-index of 112, and an i10-index of 1,021, Dr. Ren stands among the most influential scientists in advanced materials and applied electronic systems. His research spans the development of high-performance gallium nitride (GaN) and silicon carbide (SiC) devices, novel doping techniques, and breakthrough advancements in high-temperature and radiation-hardened electronics. Dr. Ren’s innovative work on chemical and biological sensors has enabled transformative applications in environmental monitoring, medical diagnostics, defense technologies, and industrial safety, significantly expanding the global impact of semiconductor-based sensing platforms. His collaborations have fostered multidisciplinary progress, integrating materials science, electrical engineering, and applied physics to address complex challenges in next-generation electronic devices. Over his prolific career, Dr. Ren has published extensively in top-tier journals, consistently producing high-quality, high-impact research that drives both fundamental understanding and technological innovation. His contributions have advanced fabrication methods, improved device reliability, and opened new avenues for sensing and power electronics, influencing academic research, industrial development, and national technological capabilities. A leader, mentor, and visionary, Dr. Ren continues to inspire emerging scientists while shaping the future of semiconductor technology through sustained excellence in research, collaboration, and innovation.

Featured Publications

Yi Wan | Point-of-Care Testing | Best Researcher Award

Prof. Dr. Yi Wan | Point-of-Care Testing | Best Researcher Award

Dean | Hainan University | China

Dr. Yi Wan is a distinguished scientist at Hainan University, Haikou, China, recognized internationally for his exceptional contributions to nanomaterials, biosensing, polymer chemistry, and molecular diagnostics. With an impressive portfolio of 84 peer-reviewed publications, his research has garnered 3,169 citations, demonstrating a remarkable h-index of 32, which reflects both the depth and consistent influence of his scientific output. Dr. Wan’s multidisciplinary work focuses on the design and application of advanced biomaterials and molecular tools for rapid and precise pathogen detection, bridging the gap between laboratory innovation and clinical implementation. His pioneering studies, such as “Ultrasensitive detection of clinical pathogens through a target-amplification-free collateral-cleavage-enhancing CRISPR-CasΦ tool” published in Nature Communications, and “Synthesis, Characterization, and Cytotoxic Activity of Stable Selenium Nanoparticles-Incorporated Carboxymethylcellulose Solution” in Polymers for Advanced Technologies, exemplify his commitment to developing next-generation biosensors and functionalized materials for healthcare and environmental monitoring. Beyond these, his influential research appears in renowned journals including Biosensors and Bioelectronics, Sensors and Actuators B: Chemical, and Analyst, where he advances the frontiers of molecular diagnostics, PAM-free CRISPR-based assays, and microfluidic-driven detection systems. Over his career, Dr. Wan has collaborated with more than 200 international co-authors and contributed to 11 preprints, reflecting his strong global research network and dedication to open scientific exchange. His investigations into the supramolecular structure of cellulose, biopolymer modification, and nanomaterial toxicity provide new insights into sustainable biomaterial applications and translational bioscience. Through his relentless pursuit of innovation, Dr. Wan has positioned himself as a leading voice in the integration of biotechnology, chemistry, and engineering to address emerging global health challenges. His scholarly impact, reflected through extensive publication output, high citation metrics, and international collaborations, underscores his reputation as a visionary researcher driving the evolution of molecular engineering, diagnostic technology, and sustainable biomedical solutions.

Featured Publications

Muhammad Zulfiqar | Biomedical Instrumentation | Best Researcher Award

Mr. Muhammad Zulfiqar | Biomedical Instrumentation | Best Researcher Award

PhD Scholar at National University of Science and Technology NUST, Islamabad, Pakistan

Engr. Muhammad Zulfiqar is a passionate and driven mechanical engineer currently pursuing a Ph.D. in Mechanical Engineering at the National University of Sciences and Technology (NUST), Islamabad. With a strong academic foundation, multiple published works, and extensive teaching experience, he has demonstrated consistent excellence in both technical and pedagogical domains. His career reflects a steadfast commitment to research, education, and innovation, positioning him as a rising contributor in Pakistan’s engineering landscape. A dynamic individual, he excels in both collaborative and independent environments, effectively combining academic rigor with practical applications across renewable energy, microfluidics, and sustainable development sectors.

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Education

Muhammad Zulfiqar has pursued a rigorous academic path beginning with a Bachelor of Science in Mechanical Engineering from HITEC University Taxila, followed by a Master’s degree in Mechanical Engineering from NUST, Islamabad. Currently, he is enrolled in the Ph.D. program at NUST, maintaining a perfect 4.0 CGPA. His formal education is supplemented by his early scholastic achievements, consistently earning first division distinctions in intermediate and matriculation levels. Throughout his academic journey, he has shown a continuous thirst for knowledge and an ability to engage deeply with complex engineering concepts.

Experience

Zulfiqar’s academic career spans several respected institutions across Pakistan. He currently serves as a lecturer at Capital University of Science and Technology (CUST), Islamabad, a position he has held since March 2020. Prior to this, he contributed as a lecturer at the University of Lahore, University of Management and Technology (UMT) Sialkot, and the University of Engineering and Technology (UET) Taxila. His earlier engagements include roles as a lab demonstrator and teaching assistant at NUST, where he provided course support in fluid mechanics and undertook responsibilities in grading and assessments. In addition to academia, he briefly worked as a mechanical engineer in the Provincial Maintenance Machinery Division in Rawalpindi, further diversifying his professional exposure.

Research Interest

Muhammad Zulfiqar’s primary research interests lie at the intersection of microfluidics, renewable energy, and heat transfer. His current doctoral research delves into the simulation and experimental validation of microfluidic devices for biological applications. He is equally invested in the advancement of sustainable energy technologies, particularly in the context of Pakistan’s evolving energy infrastructure. His passion for microfluidics bridges theoretical modeling with experimental applications, offering promising insights for innovations in biomedical and environmental engineering.

Awards

Muhammad Zulfiqar’s dedication and talent have been recognized in various academic and extracurricular platforms. He secured first place in an essay writing competition at UET Taxila and second position in a bridge structure competition at NUST Islamabad. Notably, he achieved an outstanding 98% student feedback score in his course evaluations and scored in the 95.08 percentile in the GAT Subject Test for Mechanical Engineering conducted in 2019. These accolades reflect both his academic proficiency and his ability to inspire and engage students effectively.

Publications

Muhammad Zulfiqar has contributed extensively to scholarly research, publishing multiple articles in reputable journals and conference proceedings. Selected publications include:

“Simulation and Experimental Validation of Microfluidic Device for Cell Focusing and Sorting Based on Inertial Microfluidics Technique”, Materials Proceedings MDPI, 2025 – cited in studies on microfluidic bio-sorting.

“Experimental Study on Multi-Cell Counting Using an Inertial Microfluidic Device”, Journal of Applied Science MDPI, 2025 – influencing biomedical engineering methods.

“Experimental Investigation of Particle Sorting in Y-Channels with Variable Bifurcation Angles for Microfluidic Applications”, Journal of Applied Science and Engineering, 2024 – referenced in micro-scale fluid dynamics research.

“Pakistan’s Transport Sector Modeling Using AIM/Enduse”, Engineering Proceedings MDPI, 2024 – cited in policy-oriented modeling.

“Women Empowerment through Clean Energy Transition in Pakistan”, Engineering Proceedings MDPI, 2024 – referenced in gender-energy policy studies.

“Pakistan’s Electric Vehicles Market: Challenges and Opportunities”, Engineering Proceedings MDPI, 2024 – cited in environmental technology papers.

“Accelerating Green Energy Transition Under CPEC 2.0”, Engineering Proceedings MDPI, 2024 – supporting literature in regional energy policy discourse.

Conclusion

Engr. Muhammad Zulfiqar exemplifies the qualities of a top-tier researcher—intellectually rigorous, prolific in publication, interdisciplinary in approach, and dedicated to educational excellence. His contributions to microfluidics and renewable energy, combined with impactful academic service and leadership, make him a highly suitable candidate for the Best Researcher Award. Recognizing his work would not only honor individual excellence but also highlight the importance of research-driven development in engineering and sustainability.