Properties and Applications of Amorphous Materials: 9 - Brossura

Thorpe, M. F.; Tich??, L.

 
9780792368113: Properties and Applications of Amorphous Materials: 9

Sinossi

The particular interest represented in this state-of-the art survey of amorphous materials is their electronic properties and device applications. The book is organized in five sections, starting with some more unusual aspects of structure. Section 2 deals with the area of self organization in glasses and how this relates to a glass`s rigidity. The next section surveys electronic states and transport phenomena. The fourth section deals with an area of photo-induced effects that has recently seen increased interest due to possible device applications. Finally, section 5 covers some properties specific to amorphous silicon and amorphous carbon.

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Contenuti

1: Structure. The Structure of Amorphous Materials; S.R. Elliott. Short- and Medium-Range Order in Ge-(S,Se) Glasses Using Raman Scattering; Y. Wang, K. Murase. Structural Characterization of Amorphous GexSe100-x by Infrared and Raman Spectroscopy; P. Nagels, et al. Structural Relaxation in Amorphous Materials; J. Málek, J. Shánelová. Thermal Properties Studies on As2Se3 Model Glass; E. Cernosková, et al. Vibrational Excitations in Amorphous Materials; S.R. Elliott. 2: Self-Organization and Rigidity. Rigidity and Self-Organization of Network Glasses and the Intermediate Phase; M.F. Thorpe, M.V. Chubynsky. Onset of Rigidity in Steps in Chalcogenide Glasses: The Intermediate Phase; P. Boolchand, et al. Network Stiffening and Chemical Ordering in Chalcogenide Glasses: 119Sw and 121Sb Mößbauer Spectroscopy of the Systems Ge(Sn)-As-Se and Ge(Sn)-Sb-Se; C. Rosenhahn, et al. The Chemical Threshold in Chalcogenide Glasses; L. Tichư, et al. Stochastic Matrix and Self-Organization in Glasses; R. Kerner. 3: Electronic Structure. First Principles Electronic Structure Methods; P. Ordejón. Electronic Structure of Amorphous Insulators and Photo-Structural Effects in Chalcogenide Glasses; D.A. Drabold, et al. The Electronic Properties of Nano, Micro and Amorphous Silicon; I. Balberg. Transport in Amorphous Semiconductors; P. Thomas, H. Overhof. 4: Photoinduced Effects. Nanometer-Scale Photo-Induced Structural Changes in Chalcogenide Glasses; A.V. Kolobov. Photoinduced Effects in Amorphous Semiconductors; E. Mytilineou. Modeling of Photoinduced Anisotropies in Chalcogenide Glasses; G.J. Adriaenssens, et al.Structure and Optically Induced Changes of Reactivity and Optical Properties of Amorphous Chalcogenides; M. Frumar, et al. 5: Amorphous Silicon and Carbon. Preparation and Structural Properties of Tetrahedrally Bonded Amorphous Carbon; W.I. Milne. Mechanical, Optical and Electrical Properties of Tetrahedrally Bonded Amorphous Carbon; W.I. Milne. Field Emission from Carbon Films Grown by the Cathodic Arc Process; W.I. Milne. Amorphous Silicon Materials and Devices for Active Matrix Arrays; R.A. Street. Optical Properties of Amorphous and Microcrystalline Silicon Layers; M. Vanecek, A. Poruba. Photograph. Participants. Index.

Product Description

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9780792368106: Properties and Applications of Amorphous Materials: 9

Edizione in evidenza

ISBN 10:  079236810X ISBN 13:  9780792368106
Casa editrice: Kluwer Academic Pub, 2001
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