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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.
- Reviews the latest advances in the utilization of metal oxide materials in photonics, optoelectronics and optics-based medical applications
- Considers the most relevant synthesis strategies for the development of high-performing metal oxide-based devices
- Addresses a wide range of metal oxides including photonic crystals, fibers, metastructures, glasses, and more
Language
Place of publication
Publishing group
Elsevier Science & Techn.
Illustrations
Approx. 140 illustrations (40 in full color)
File size
ISBN-13
978-0-323-85825-0 (9780323858250)
Schweitzer Classification
Section 1: Technology and properties1. General introduction on the Metal oxides for optoelectronic and photonic applications2. Recent developments in the metal oxides designed for optoelectronic and photonic applications3. Features of preparation of metal oxide-based glasses and their physical properties4. Metal oxide-based optical fibers
Section 2: Optoelectronic and photonic applications5. Metal oxides-based LED and lasers6. Metal oxides-based photodetectors (from IR to UV)7. Optical and optoelectronic metal oxide-based sensors8. Passive optoelectronic elements9. Metal oxide photonic crystals and their application10. Heavy-metal oxides glasses and its optoelectronic applications11. Integrated optoelectronics
Section 3: Metal oxide-based optoelectronic devices in biomedical applications12. Metal oxide-based fiber technology in the pharmaceutical and medical chemistry13. Metal oxide involved LED technology in cosmetic surgery and treatment14. Metal oxide containing luminescent and magnetic probes for personalized medicine15. Metal-oxides meta structures and their biological applications