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Elsevier Handbook of Crystal Growth: Fundamentals: Volume 1A-1B (Handbook of Crystal Growth, Volume 1A-1B)
9780444563699
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Description
Product Description Volume IA Handbook of Crystal Growth, 2nd Edition (Fundamentals: Thermodynamics and Kinetics) Volume IA addresses the present status of crystal growth science, and provides scientific tools for the following volumes: Volume II (Bulk Crystal Growth) and III (Thin Film Growth and Epitaxy). Volume IA highlights thermodynamics and kinetics. After historical introduction of the crystal growth, phase equilibria, defect thermodynamics, stoichiometry, and shape of crystal and structure of melt are described. Then, the most fundamental and basic aspects of crystal growth are presented, along with the theories of nucleation and growth kinetics. In addition, the simulations of crystal growth by Monte Carlo, ab initio-based approach and colloidal assembly are thoroughly investigated. Volume IB Handbook of Crystal Growth, 2nd Edition (Fundamentals: Transport and Stability) Volume IB discusses pattern formation, a typical problem in crystal growth. In addition, an introduction to morphological stability is given and the phase-field model is explained with comparison to experiments. The field of nanocrystal growth is rapidly expanding and here the growth from vapor is presented as an example. For the advancement of life science, the crystal growth of protein and other biological molecules is indispensable and biological crystallization in nature gives many hints for their crystal growth. Another subject discussed is pharmaceutical crystal growth. To understand the crystal growth, in situ observation is extremely powerful. The observation techniques are demonstrated. Volume IA * Explores phase equilibria, defect thermodynamics of Si, stoichiometry of oxides and atomistic structure of melt and alloys* Explains basic ideas to understand crystal growth, equilibrium shape of crystal, rough-smooth transition of step and surface, nucleation and growth mechanisms* Focuses on simulation of crystal growth by classical Monte Carlo, ab-initio based quantum mechanical approach, kinetic Monte Carlo and phase field model. Controlled colloidal assembly is presented as an experimental model for crystal growth. Volume IIB * Describes morphological stability theory and phase-field model and comparison to experiments of dendritic growth* Presents nanocrystal growth in vapor as well as protein crystal growth and biological crystallization* Interprets mass production of pharmaceutical crystals to be understood as ordinary crystal growth and explains crystallization of chiral molecules* Demonstrates in situ observation of crystal growth in vapor, solution and melt on the ground and in space Review "...any library in the materials science or chemical engineering departments of universities should carry these volumes... I would recommend it to academics in the crystal growth field who want to have a complete reference work they can use to ensure their students are well grounded in the fundamentals and also to industrial crystal-growers who now and then need to understand why it is that what they do actually works." --Advanced Materials Review This newly revised and updated handbook provides a comprehensive compendium on crystal growth, documenting authoritatively fundamentals and applications. About the Author Tatau Nishinaga is Professor Emeritus at The University of Tokyo and Visiting Professor Toyohashi University of Technology. In the recent past (2002-2008) he was President of Toyohashi University of Technology. With more than 40 years experience in the field of Semiconductors, and in particular Crystal Growth, he is well-recognized as well as accomplished, with prizes including (but not limited to): The Yamazaki-Teiichi Prize (2002); IOCG (International Organization for Crystal Growth) Laudise Prize (2004); Award for the Contribution to the Japanese Association for Crystal Growth (2004); Award for the Great Achievement to the Japanese Association for Crystal Growth (2007). His 207 original papers, 2
Product Specifications
- Brand
- Elsevier
- Model
- 9780444563699
- Format
- Hardcover
- ASIN
- 0444563695
- Domain
- Amazon UK
- Publication Date
- 14 November 2014
- Listed Since
- 02 May 2014
Barcode
No barcode data available
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