Crystals and crystal growth /

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Bibliographic Details
Imprint:Hauppauge, New York : Nova Science Publishers, Inc., [2014]
Description:1 online resource.
Language:English
Series:Geology and Mineralogy Research Developments
Geology and mineralogy research developments.
Subject:
Format: E-Resource Book
URL for this record:http://pi.lib.uchicago.edu/1001/cat/bib/11240646
Hidden Bibliographic Details
Other authors / contributors:Carter, Wilfred, 1964- editor.
ISBN:9781634638227
1634638220
9781634637916
1634637917
Notes:Includes index.
Includes bibliographical references and index.
Print version record.
Summary:Hydrothermal crystal growth offers a complementary alternative to many of the classical techniques of crystal growth used to synthesize new materials and grow bulk crystals for specific applications. This specialized technique is often capable of growing crystals at temperatures well below their melting points and thus potentially offers routes to new phases or the growth of bulk crystals with less thermal strain. Borate crystals are widely used as nonlinear optical, laser and luminescent materials due to their diversified structures, and good chemical and physical properties. The growth of hi.
Other form:Print version: Crystals and crystal growth 9781634637916

MARC

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490 1 |a Geology and Mineralogy Research Developments 
500 |a Includes index. 
588 0 |a Print version record. 
505 0 |a CRYSTALS AND CRYSTAL GROWTH; CRYSTALS AND CRYSTAL GROWTH; Library of Congress Cataloging-in-Publication Data; Contents; Preface; Chapter 1: Hydrothermal Crystal Growth from SiO2 -- GeO2 Solid Solution for Piezoelectric Applications; CNRS, Université de Bordeaux, ICMCB, Pessac, France; Abstract; 1. Introduction; 2. Historical Aspects of Hydrothermal Crystal Growth; 3. Hydrodynamic Aspects of Hydrothermal Crystal Growth; 4. Hydrothermal Solvent Behaviour; 5. Crystal Growth by Hydrothermal; 6. ( -Quartz -General Properties and Applications; 7. Germanium Oxide (GeO2) Crystal Structure. 
505 8 |a 8. SiO2-GeO2Based Single Crystals by Hydrothermal MethodConclusion; References; Chapter 2: In-Situ Investigation of the Melt Structures in Borate Crystal Growth Systems; Abstract; 1. Introduction; 2. High-Temperature Raman Spectroscopy; 3. The Density Functional Theory Method; 4. Melt Structures in Some Borate Crystal Growth Systems; (1) Melt Structures in the Ba2Mg(B3O6)2 and BaB2O4 Crystal Growth Systems; (2) Melt Structures in the CsB3O5 and LiB3O5 Crystal Growth Systems; (3) The Melt Structure in the BiB3O6 Crystal Growth System; (4) The Melt Structure in the Li2B4O7 Crystal Growth System. 
505 8 |a ConclusionAcknowledgments; References; Chapter 3: Doped Organic Crystals with High Efficiency, Color-Tunable Emission toward Laser Application; Abstract; Introduction; Morphology and Structure of the Crystals; Optical Properties; Amplified Spontaneous Emission Experiment; White-Light Emissive Doped Crystal; and Time-Resolved Properties; Conclusion; References; Chapter 4: Modeling Effects of Impurities on Crystal Growth; Abstract; 1. Introduction; 2. Distribution Coefficient of Impurity; 3. Modeling Impurity Effects; 3.1. Kubota-Mullin Model; 3.2. Birth and Spread Model. 
505 8 |a 4. Crystal Elongation Dueto Macromolecules Additives; Conclusion; References; Index. 
520 |a Hydrothermal crystal growth offers a complementary alternative to many of the classical techniques of crystal growth used to synthesize new materials and grow bulk crystals for specific applications. This specialized technique is often capable of growing crystals at temperatures well below their melting points and thus potentially offers routes to new phases or the growth of bulk crystals with less thermal strain. Borate crystals are widely used as nonlinear optical, laser and luminescent materials due to their diversified structures, and good chemical and physical properties. The growth of hi. 
504 |a Includes bibliographical references and index. 
650 0 |a Crystals.  |0 http://id.loc.gov/authorities/subjects/sh85034503 
650 0 |a Crystal growth.  |0 http://id.loc.gov/authorities/subjects/sh85034507 
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