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Titlebook: Optical and Electrical Properties; Peter A. Lee Book 1976 D. Reidel Publishing Company, Dordrecht, Holland 1976 Pet.alkali metal.chemistry

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發(fā)表于 2025-3-21 18:48:57 | 只看該作者 |倒序瀏覽 |閱讀模式
書目名稱Optical and Electrical Properties
編輯Peter A. Lee
視頻videohttp://file.papertrans.cn/703/702717/702717.mp4
叢書名稱Physics and Chemistry of Materials with A
圖書封面Titlebook: Optical and Electrical Properties;  Peter A. Lee Book 1976 D. Reidel Publishing Company, Dordrecht, Holland 1976 Pet.alkali metal.chemistry
描述This fourth volume in the series ‘Physics and Chemistry of Materials with Layered Structures‘ is concerned with providing a critical review of the significant optical and electrical properties by established authors who have themselves made many significant contributions to these fields. Research into these materials has recently gained a new impetus and their fascinating properties have attracted many new research workers. These people should find much of value in the reviews contained in this volume and the editor is very much indebted for the painstaking and hard work put into the preparation of the various chapters by the authors. The optical properties provide useful information for deriving the band struc- tures, a knowledge of which is required for an interpretation of measurements on the electronic properties. The chapters by Dr Evans, Dr Williams and Dr Bordas describe different techniques which have provided much detailed data on this subject. An interesting property of these materials is the comparative ease with which thin specimens may be prepared for these measurements and this is highlighted in the super conducting experiments outlined by Professor Frindt and Dr Hunt
出版日期Book 1976
關(guān)鍵詞Pet; alkali metal; chemistry; crystal; experiment; fields; information; metals; physics; semiconductor; spectr
版次1
doihttps://doi.org/10.1007/978-94-010-1478-6
isbn_softcover978-94-010-1480-9
isbn_ebook978-94-010-1478-6
copyrightD. Reidel Publishing Company, Dordrecht, Holland 1976
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The Optical Properties, Electronic Structure, and Photoconductivity of Arsenic Chalcogenide Layer Chich forms the molecular building block in these crystals is held together by nearly purely-covalent bonding of the lowest connectivity (threefold coordination) compatible with a layer structure. Unlike graphite (with its π-bonding admixture), the bonding is entirely σ-type; unlike the transition-me
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Transport Properties of Layered Semiconductors,rement does not always offer discriminative information with respect to the various physical processes which may compete in the transport. In layer structures however, such measurements appear to have conclusively demonstrated that charge carriers interact predominantly with those optical vibrations
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Experimental Aspects of Superconductivity in Layered Structures,ciated with highly anisotropic superconductors have been motivating factors in the rapid increase in the study of superconducting layered structures over the past five years. The work has tended to be concentrated on three layered systems: the Nb and Ta chalcogenides, all of which are highly anisotr
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Structural and Magnetic Properties of Layered Chalcogenides of the Transition Elements,n-metal dichalcogenides which form typical layer structures. They are built from layers of metal atoms M, sandwiched between two sheets of chalcogens X, which are bonded by van der Waals energy. The early work on transition-metal dichalcogenides has been reviewed by Wilson and Yoffe [1]. Also, their
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Physics and Chemistry of Materials with Ahttp://image.papertrans.cn/o/image/702717.jpg
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https://doi.org/10.1007/978-94-010-1478-6Pet; alkali metal; chemistry; crystal; experiment; fields; information; metals; physics; semiconductor; spectr
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Optical Properties of Layer Compounds,This chapter is primarily concerned with the ways in which optical absorption/reflection measurements can give information about the electron energy band structure of layer crystals. Infrared measurements of the atomic vibration spectra are given at the end of the chapter.
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