Suresh Kumar Jakka | Nanophotonics and Nanoelectronics | Best Researcher Award

Dr. Suresh Kumar Jakka | Nanophotonics and Nanoelectronics | Best Researcher Award

Post-Doctoral Fellow | University of Aveiro | Portugal

Dr. Suresh Kumar Jakka is an accomplished materials physicist with a strong research focus on luminescent and functional materials, rare-earth-doped glasses and ceramics, upconversion nanomaterials, optical thermometry, bioactive glasses, and photonic materials for energy, sensing, and biomedical applications. His scholarly output comprises 89 peer-reviewed publications across high-impact Q1 and Q2 journals, conference proceedings, edited volumes, and book chapters, reflecting sustained contributions to spectroscopy, nanophotonics, solid-state physics, and advanced materials research. With over 2,700 citations, an h-index of 29, and an i10-index of 56, his work demonstrates significant international visibility and influence. He has contributed to interdisciplinary R&D projects, including funded national and international research initiatives, and has advanced innovation in optical materials, phosphors, perovskites, thin films, and biofunctional nanocomposites. His research contributions extend to editorial roles, peer-review service for leading journals, conference leadership, and recognition through competitive research awards and scientific honors.

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Featured Publications

Shang Zhou | Nanophotonics and Nanoelectronics | Best Researcher Award

Mr. Shang Zhou | Nanophotonics and Nanoelectronics | Best Researcher Award

Graduate Student | Gannan Medical University | China

Mr. Shang Zhou is an emerging researcher whose academic pursuits converge at the intersection of medicine, nanomaterials, and semiconductor physics. His core research focus lies in investigating contact characteristics, interface modulation, and the physical mechanisms of van der Waals heterostructures, particularly those involving graphene and gallium nitride (GaN). By integrating theoretical modeling and experimental validation, his work aims to enhance the performance of electronic and optoelectronic devices through optimized heterojunction structures. His major research contribution includes the project “Research on the Contact Characteristics of Graphene/GaN Heterojunction,” which explores how GaN crystal orientation and surface conditions influence contact behaviors in graphene-based systems. This study offers insights into the design of next-generation semiconductor and nanodevice architectures. His publication in Applied Surface Science (SCI-indexed, Vol. 713, 2025) further underscores his role in bridging fundamental materials science with practical device engineering. Mr. Shang Zhou’s innovative capacity is reflected in his extensive intellectual property portfolio, comprising 12 patents—including several invention patents on graphene/GaN interface regulation methods, semiconductor cleaning technologies, and adhesive removal techniques. His patents also extend to applied innovations such as anti-drowning self-rescue devices and photoelectric sensor systems, demonstrating his versatility and translational approach to technology development. Additionally, he holds two software copyrights related to digital safety education and dispute mediation platforms, showcasing his interdisciplinary engagement across science and societal applications. His Scopus metrics indicate 4 research documents with 3 citations and an h-index of 1, representing early yet promising contributions in high-impact research domains. Through his continuous work in nanostructured materials, heterojunction device optimization, and applied nanotechnology, Mr. Shang Zhou exemplifies a researcher dedicated to advancing the frontiers of semiconductor interface physics and nanomaterial-based biomedical engineering.

Profiles: Scopus | ORCID | Scilit

Featured Publications

1. Zhou, S., Meng, Y., Li, J., Cheng, Y., Bao, X., Wang, Z., Deng, H., Yang, Y., Chen, P., Chen, Y., Ouyang, F., Wang, Q., & Zhong, H. (2025). The impact of GaN crystal orientation on the contact properties of single-layer graphene/GaN: A theoretical and experimental study. Applied Surface Science, 713, 164305.

2. Meng, Y., Du, X., Zhou, S., Li, J., Feng, R., Zhang, H., Xu, Q., Zhao, W., Liu, Z., & Zhong, H. (2024). Investigation of persistent photoconductivity of gallium nitride semiconductor and differentiation of primary neural stem cells. Molecules, 29(18), 4439.