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Metal-Induced Crystallization : Fundamentals and Applications

By: (Edited by) Eric J. Mittemeijer , (Edited by) Lars P. H. Jeurgens , (Edited by) Zumin Wang

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Ksh 25,200.00

Format: Hardback or Cased Book

ISBN-10: 981446340X

ISBN-13: 9789814463409

Publisher: Pan Stanford Publishing Pte Ltd

Imprint: Pan Stanford Publishing Pte Ltd

Country of Manufacture: US

Country of Publication: GB

Publication Date: Jan 28th, 2015

Print length: 320 Pages

Weight: 594 grams

Dimensions (height x width x thickness): 16.00 x 23.60 x 2.10 cms

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This book provides the first comprehensive and in-depth overview of the current fundamental understanding of metal-induced crystallization and further elucidates how to employ this process in various technologies, including in thin-film solar cells and display technologies. It aims to give the reader a thorough perspective of metal-induced crystallization and thereby stimulate the development of novel crystalline-semiconductor-based technologies.

Crystalline semiconductors in the form of thin films are crucial materials for many modern, advanced technologies in fields such as microelectronics, optoelectronics, display technology, and photovoltaic technology. Crystalline semiconductors can be produced at surprisingly low temperatures (as low as 120 ˚C) by crystallization of amorphous semiconductors, which are put in contact with a metal. This so-called metal-induced crystallization process has attracted great scientific and technological interest because it allows the production of crystalline semiconductor-based advanced devices at very low temperatures, for example, directly on low-cost (but often heat-sensitive) substrates.

This book provides the first comprehensive and in-depth overview of the current fundamental understanding of the metal-induced crystallization process and further elucidates how to employ this process in different technologies, for example, in thin-film solar cells and display technologies. It aims to give the reader a comprehensive perspective of the metal-induced crystallization process and thereby stimulate the development of novel crystalline semiconductor-based technologies.


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