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Vladimir G. Dubrovskii - Nucleation Theory and Growth of Nanostructures - 9783662509777 - V9783662509777
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Nucleation Theory and Growth of Nanostructures

€ 222.17
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Description for Nucleation Theory and Growth of Nanostructures Paperback. This book shows how the advanced nucleation theory can be used in the modeling of growth properties, morphology and the crystal phase of such nanostructures. Series: Nanoscience and Technology. Num Pages: 614 pages, 232 black & white illustrations, 126 colour illustrations, biography. BIC Classification: PHFC; TBN; TDPB; TJFD; TJFD5. Category: (P) Professional & Vocational. Dimension: 235 x 155 x 31. Weight in Grams: 932.
Semiconductor nanostructures such as nanowires are promising building blocks of future nanoelectronic, nanophotonic and nanosensing devices. Their physical properties are primarily determined by the epitaxy process which is rather different from the conventional thin film growth. This book shows how the advanced nucleation theory can be used in modeling of growth properties, morphology and crystal phase of such nanostructures. The book represents a systematic account of modern nucleation theory in open systems,  nanostructure nucleation and growth mechanisms, and possibilities for tuning the nanostructure properties to the desired values.

Product Details

Format
Paperback
Publication date
2016
Publisher
Springer-Verlag Berlin and Heidelberg GmbH & Co. KG Germany
Number of pages
614
Condition
New
Series
Nanoscience and Technology
Number of Pages
601
Place of Publication
Berlin, Germany
ISBN
9783662509777
SKU
V9783662509777
Shipping Time
Usually ships in 15 to 20 working days
Ref
99-15

About Vladimir G. Dubrovskii
Head of the Department of theoretical physics Deputy Director of Nanotechnology Centre Head of the Laboratory of physics of nanostructures Coordinator of Associated International Laboratory “Nanostructures of compound semiconductors, Growth, Properties, Devices” (ILNACS) Deputy Director of Russian-Chinese joint laboratory “Zh.I. Alferov laboratory of information optoelectronics and nanoheterostructures”

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