Metal Oxides for Optoelectronics and Optics-based Medical Applications reviews recent advances in metal oxides and their mechanisms for optoelectronic, photoluminescent and medical applications. In addition, the book examines the integration of key chemistry concepts with nanoelectronics that can improve performance in a diverse range of applications. Sections place a strong emphasis on synthesis processes that can improve the metal oxides’ physical properties and the reflected surface chemical changes that can impact their performance in various devices like light-emitting diodes, luminescence materials, solar cells, etc. Finally, the book discusses the challenges associated with the handling and maintenance of metal oxides crystalline properties.
This book will be suitable for academics and those working in R&D in industry looking to learn more about cheaper and more effective methods to produce metal oxides for use in the fields of electronics, photonics, biophotonics and engineering.
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Dr. Suresh Sagadevan is working as an Associate Professor and Head of International affairs at the Nanotechnology & Catalysis Research Centre, University of Malaya, Malaysia. He has achieved substantial and impactful research milestones. He has been recognized as the top 2% scientist in the world for the years 2023, 2022, 2021 and 2020. He has been awarded by the Japan Society for the Promotion of Science (JSPS) fellowship, in Japan, (2023). Furthermore, he received awards as a Fellow of the Royal Society of Chemistry (FRSC) and Charted Chemist (CChem) conferred by the Royal Society of Chemistry, UK. Besides, he secured many awards such as Highly Cited Researcher (Science) from, the University of Malaya (2022), Published papers in the top 10% of Web of Science (WoS) Indexed Journals (2023, 2022), Highly Cited Special Issue (Guest Editor) (2023), Wikipedia citation follow-up, Wikipedia, 2022, JMMP Award (2021), Best Scientific Researcher, Best Academic Researcher Award, Indian Spectrophysics Association (ISPA) award, Young Researcher Award, Best Faculty Award, and so on. He also filed 3 patents and published more than 450 WoS journal articles. He has authored 15 international book series and 50 book chapters. As for research, he has contributed to his performance by conducting excellent research and securing national/international grants. He is an Editor, Guest Editor, and Editorial board member of many reputed ISI journals. He has been a recognized reviewer for many reputed journals. Indeed, he is working in various fields such as Nanofabrication, functional Materials, graphene, polymeric nanocomposite, thin films for solar cells, supercapacitors, optoelectronics, photocatalytic, and biosensor applications.
Metal Oxides are relatively inexpensive, robust, lightweight, long-lasting, and benefit from high material sensitivity and quick response times. However, the lack of foundational knowledge on the synthesis processes, mechanisms and efficiency control is a major bottleneck for practical application.
Metal Oxides for Optoelectronics and Optics-based Medical Applications reviews the recent advances in metal oxides and their mechanisms for optoelectronic, photoluminescent, and medical applications. Also, this book examines the integration of key chemistry concepts with nanoelectronics which can improve the performance in a diverse range of applications in optoelectronics. There is a strong emphasis on synthesis processes that can improve the metal oxides’ physical properties and the reflected surface chemical changes that can impact their performance in various devices like light-emitting diodes, luminescence materials, solar cells, etc. Then the book discusses the challenges associated with the handling and maintenance of metal oxides crystalline properties and n and p-type interactions in conduction band and other barriers to commercialization.
Metal Oxides for Optoelectronics and Optics-based Medical Applications is suitable for academics and those working in R&D in industry looking to learn more about the cheaper and more effective methods to produce metal oxides for use in the fields of electronics, photonics, biophotonics, and engineering.
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