Description: Silicon Nanomaterials Sourcebook : Low-Dimensional Structures, Quantum Dots, and Nanowires, Volume OneThis comprehensive tutorial guide to silicon nanomaterials spans from fundamental properties, growth mechanisms, and processing of nanosilicon to electronic device, energy conversion and storage, biomedical, and environmental applications. It also presents core knowledge with basic mathematical equations, tables, and graphs in order to provide the reader with the tools necessary to understand the latest technology developments. From low-dimensional structures, quantum dots, and nanowires to hybrid materials, arrays, networks, and biomedical applications, this Sourcebook is a complete resource for anyone working with this materials: Covers fundamental concepts, properties, methods, and practical applications. Focuses on one important type of silicon nanomaterial in every chapter. Discusses formation, properties, and applications for each material. Written in a tutorial style with basic equations and fundamentals included in an extended introduction. Highlights materials that show exceptional properties as well as strong prospects for future applications. Klaus D. Sattler is professor physics at the University of Hawaii, Honolulu, having earned his PhD at the Swiss Federal Institute of Technology (ETH) in Zurich. He was honored with the Walter Schottky Prize from the German Physical Society, and is the editor of the sister work also published by Taylor & Francis, Carbon Nanomaterials Sourcebook, as well as the acclaimed multi-volume Handbook of Nanophysics. Product details Format Hardback | 624 pages Dimensions 178 x 254mm | 1,361g Publication date 25 Jun 2019 Publisher Taylor & Francis Inc Imprint Productivity Press Publication City/Country Portland, United States Language English ISBN10 1498763774 ISBN13 9781498763776
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Subject Area: Mechanical Engineering, Manufacturing Engineering, Nanotechnology
Item Height: 254mm
Item Width: 178mm
Format: Hardcover
Publisher: Taylor & Francis
Subject: Physics
Publication Year: 2017
Item Weight: 1361g
Number of Pages: 624 Pages