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Ceramic Science and Engineering: Basics to Recent Advancements

Contributor(s): Misra, Kamakhya Prakash (Editor), Misra, R D K (Editor)

ISBN: 9780323899567

Publisher: Elsevier

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Pub Date: May 5, 2022

Lexile Code: 0000

Target Age Group: NA to NA

Physical Info: 1.24" H x 9.00" L x 6.00" W ( 1.79 lbs) 616 pages

Series: Elsevier Advanced Ceramic Materials

Descriptions, Reviews, etc.

Description:

Ceramic Science and Engineering: Basics to Recent Advancements covers the fundamentals, classification and applications surrounding ceramic engineering. In addition, the book contains an extensive review of the current published literature on established ceramic materials. Other sections present an extensive review of up-to-date research on new innovative ceramic materials and reviews recently published articles, case studies and the latest research outputs. The book will be an essential reference resource for materials scientists, physicists, chemists and engineers, postgraduate students, early career researchers, and industrial researchers working in R&D in the development of ceramic materials.

Ceramic engineering deals with the science and technology of creating objects from inorganic and non-metallic materials. It combines the principles of chemistry, physics and engineering. Fiber-optic devices, microprocessors and solar panels are just a few examples of ceramic engineering being applied in everyday life. Advanced ceramics such as alumina, aluminum nitride, zirconia, ZnO, silicon carbide, silicon nitride and titania-based materials, each of which have their own specific characteristics and offer an economic and high-performance alternative to more conventional materials such as glass, metals and plastics are also discussed.

Brief description: Kamakhya Prakash Misra received his Ph.D. in Physics in the field of materials science and thin films from the University of Lucknow, India. Presently, he is an Assistant Professor in the Department of Physics at Manipal University Jaipur, India. His current research interests include sol gel derived nanomaterials and thin film structures mainly to understand their opto-electronic behaviour, particularly band gap engineering of wide band gap semiconductors like ZnO and TiO2 (ceramic materials) using various dopants and controlling the processing parameters. Apart from band gap engineering, he monitors various aspects and features of surfaces developed in his lab using conventional techniques like SEM and AFM as well as high resolution techniques like XRF (XRR and GIXRF). His speciality lies in interpreting and analyzing photoluminescence, nonlinearity and energy level descriptions of various inorganic compounds. He has published more than 20 research articles in international journals of high repute. He also engages in other scholarly activities such as teaching courses on solid state physics and materials science at both undergraduate and postgraduate level.

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