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Titlebook: Equilibrium Structure and Properties of Surfaces and Interfaces; A. Gonis,G. M. Stocks Book 1992 Springer Science+Business Media New York

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发表于 2025-3-21 16:31:54 | 显示全部楼层 |阅读模式
书目名称Equilibrium Structure and Properties of Surfaces and Interfaces
编辑A. Gonis,G. M. Stocks
视频video
丛书名称NATO Science Series B:
图书封面Titlebook: Equilibrium Structure and Properties of Surfaces and Interfaces;  A. Gonis,G. M. Stocks Book 1992 Springer Science+Business Media New York
描述It is almost self-evident that surface and interface science, coupled with the electronic structure of bulk materials, playa fundamental role in the understanding of materials properties. If one is to have any hope of understanding such properties as catalysis, microelectronic devices and contacts, wear, lubrication, resistance to corrosion, ductility, creep, intragranular fracture, toughness and strength of steels, adhesion of protective oxide scales, and the mechanical properties of ceramics, one must address a rather complex problem involving a number of fundamental parameters: the atomic and electronic structure, the energy and chemistry of surface and interface regions, diffusion along and across interfaces, and the response of an interface to stress. The intense need to gain an understanding of the properties of surfaces and interfaces is amply attested to by the large number of conferences and workshops held on surface and interface science. Because of this need, the fields of surface and interface science have been established in their own right, although their development presently lags behind that of general materials science associated with bulk, translationally invarian
出版日期Book 1992
关键词Helium-Atom-Streuung; X-Ray; X-ray scattering; ceramics; materials properties; materials science; microsco
版次1
doihttps://doi.org/10.1007/978-1-4615-3394-8
isbn_softcover978-1-4613-6499-3
isbn_ebook978-1-4615-3394-8Series ISSN 0258-1221
issn_series 0258-1221
copyrightSpringer Science+Business Media New York 1992
The information of publication is updating

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https://doi.org/10.1007/978-3-319-03191-0 without the need of complex transformations. The interest in looking for smaller and smaller details stimulated the development originally of optical microseopes with high magnification and ended for the present by the build-up of completely new microscopic techniques based on electronic effects. F
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Layla Mohammad-Hadi,Marym Mohammad-Hadi(see, for example, Foiles 1992). As fig. 1 illustrates schematically the accurate first-principles Local Density Functional (LDF) theory can be solved routinely for around fifty non-equivalent atoms (see, for example, Car 1992), whereas the less accurate, more intuitive Tight Binding (TB) approximat
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https://doi.org/10.1007/978-94-009-3253-1r a review). Recent advances in surface science, particularly through new experimental techniques, are revealing the existence of a diversity of line defects in addition to steps, and it is anticipated that these mayaiso significantly influence surface processes. In view of these developments, it is
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T. S. Chandrashekar,Y. Naraharional systems, the electronic and atomic structure of surfaces and interfaces shows novel properties such as localized states. Surfaces are of great technological importance in corrosion and catalysis, and metal-semiconductor and semiconductor-semiconductor interfaces are important in electronics; fr
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James M. Nelson,Richard H. Bossiorption sites.. Over half of these were analyzed by low-energy electron diffraction (LEED), the oldest technique in this field. Compared to other techniques of surface structure determination, LEED gives the largest flexibility of application, being suitable for most materials (metals, semiconductor
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Nianrong Sun,Chunhui Deng,Xizhong Shen states., and the determination of their detailed dispersion curves. Nevertheless, angle-resolved photoemission from core levels also contains a great deal of useful information about the local electronic structure and the local atomic geometry in the bulk and at surfaces. In this note, two differen
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