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Metal Oxide Defects: Fundamentals, Design, Development and Applications provides a broad perspective on the development of advanced experimental techniques to study defects and their chemical activity and catalytic reactivity in various metal oxides. This book highlights advances in characterization and analytical techniques to achieve better understanding of a wide range of defects, most importantly, state-of-the-art methodologies for controlling defects. The book provides readers with pathways to apply basic principles and interpret the behavior of metal oxides.
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Produktbeschreibung
Metal Oxide Defects: Fundamentals, Design, Development and Applications provides a broad perspective on the development of advanced experimental techniques to study defects and their chemical activity and catalytic reactivity in various metal oxides. This book highlights advances in characterization and analytical techniques to achieve better understanding of a wide range of defects, most importantly, state-of-the-art methodologies for controlling defects. The book provides readers with pathways to apply basic principles and interpret the behavior of metal oxides.

After reviewing characterization and analytical techniques, the book focuses on the relationship of defects to the properties and performance of metal oxides. Finally, there is a review of the methods to control defects and the applications of defect engineering for the design of metal oxides for applications in optoelectronics, energy, sensing, and more. This book is a key reference for materials scientistsand engineers, chemists, and physicists.
Autorenporträt
During the last ten years of his research career, he has published more than 90 research papers in various reputed international journals. He has published one book and several book chapters in several excellent books. He is an expert in chemical lab work and characterization techniques for defects in metal oxides. He has admirable skill in the synthesis of materials in 0D, 1D, 2D and 3D forms with various shapes and sizes via different physical and chemical synthesis routes. He has in-depth knowledge in materials physics. His specialty is photoluminescence spectroscopy and its applicability towards display device application, LED fabrication, fingerprint detection, barcode detection, and security ink applications. Recently he is involved with the fabrication of flexible white light emitting diodes based on inorganic materials and development of Mini/ Micro- LEDs with the help of perovskite quantum dots.