Zinc oxide materials for electronic and optoelectronic device applications

"The main market will be university, government, and industrial research and development laboratories, particularly those engaged in zinc oxide and related materials research"--

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Bibliographic Details
Group Author: Litton, Cole W.; Reynolds, Donald C.; Collins, Thomas C., 1936-
Published:
Literature type: Electronic eBook
Language: English
Series: Wiley series in materials for electronic & optoelectronic applications ; 35
Subjects:
Online Access: http://onlinelibrary.wiley.com/book/10.1002/9781119991038
Summary: "The main market will be university, government, and industrial research and development laboratories, particularly those engaged in zinc oxide and related materials research"--
Carrier Form: 1 online resource.
Bibliography: Includes bibliographical references and index.
ISBN: 9781119991038 (electronic bk.)
111999103X (electronic bk.)
9781119991045 (electronic bk.)
1119991048 (electronic bk.)
Index Number: TK7871
CLC: TN204
Contents: Front Matter -- Fundamental Properties of ZnO / T C Collins, R J Hauenstein -- Optical Properties of ZnO / D C Reynolds, C W Litton, T C Collins -- Electrical Transport Properties in Zinc Oxide / B Claflin, D C Look -- ZnO Surface Properties and Schottky Contacts / Leonard J Brillson -- Native Point Defects and Doping in ZnO / Anderson Janotti, Chris G Van de Walle -- Spectral Identification of Impurities and Native Defects in ZnO / B K Meyer, D M Hofmann, J Stehr, A Hoffmann -- Vapor Transport Growth of ZnO Substrates and Homoepitaxy of ZnO Device Layers / Gene Cantwell, Jizhi Zhang, J J Song -- Growth Mechanisms and Properties of Hydrothermal ZnO / M J Callahan, Dirk Ehrentraut, M N Alexander, Buguo Wang -- Growth and Characterization of GaN/ZnO Heteroepitaxy and ZnO-Based Hybrid Devices / Ryoko Shimada, Hadis Morko -- Room Temperature Stimulated Emission and ZnO-Based Lasers / D M Bagnall -- ZnO-Based Ultraviolet Detectors / Jian Zhong, Yicheng Lu -- Room-Temperature Stimulated Emission from ZnO Multiple Quantum Wells Grown on Lattice-Matched Substrates / Takayuki Makino, Yusaburo Segawa, Masashi Kawasaki, Hideomi Koinuma -- Index.