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Titlebook: Solvay Conference on Surface Science; Invited Lectures and Frederik W. Wette Conference proceedings 1988 Springer-Verlag Berlin Heidelberg

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书目名称Solvay Conference on Surface Science
副标题Invited Lectures and
编辑Frederik W. Wette
视频video
丛书名称Springer Series in Surface Sciences
图书封面Titlebook: Solvay Conference on Surface Science; Invited Lectures and Frederik W. Wette Conference proceedings 1988 Springer-Verlag Berlin Heidelberg
描述The articles collected in this volume give a broad overview of the current state of surface science. Pioneers in the field and researchers met together at this Solvay Conference to discuss important new developments in surface science, with an emphasis on the common area between solid state physics and physical chemistry. The contributions deal with the following subjects: structure of surfaces, surface science and catalysis, two-dimensional physics and phase transitions, scanning tunneling microscopy, surface scattering and surface dynamics, chemical reactions at surfaces, solid-solid interfaces and superlattices, and surface studies with synchrotron radiation. On each of these subjects an introductory review talk and a number of short research contributions are followed by extensive discussions, which appear in full in the text. This nineteenth Solvay Conference commemorates the 75th anniversary of the Solvay Institutes.
出版日期Conference proceedings 1988
关键词EXAFS; Helium-Atom-Streuung; LEED; NEXAFS; Surface science; catalysis; chemistry; electronic structure; phys
版次1
doihttps://doi.org/10.1007/978-3-642-74218-7
isbn_softcover978-3-642-74220-0
isbn_ebook978-3-642-74218-7Series ISSN 0931-5195 Series E-ISSN 2198-4743
issn_series 0931-5195
copyrightSpringer-Verlag Berlin Heidelberg 1988
The information of publication is updating

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A New Model for the Cleaved Si (111)-(2x1) Surface×1) surface is less satisfactory [1]. A Si crystal in the (111) orientation can be viewed as a series of tetrahedra with one bond vertical and the other three forming the base, resulting in a structure that consists of double layers of closely spaced atomic planes (d = 0.78 Å) separated from each ot
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Complete Surface Structuresis forced on us by the fact that a good fit to LEED data requires fixing all atom positions that deviate significantly from bulk positions. Hence many cases of deep structure, i.e., deviations extending several atomic layers below the top layer have been found. Especially studies of multilayer relax
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The Activation of Chemical Bonds at Surfaceserogeneous catalytic processes proceed by way of bond activation in adsorbed species. Chemical vapor deposition onto semiconductor surfaces to produce thin film semiconductor materials depends upon bond activation at the surface. Surface corrosion processes generally involve activated molecular surf
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The Surface Chemical Bond of Adsorbed Organic Monolayers and Adsorbate-Induced Restructuring of Surf2]. LEED (low energy electron diffraction) surface crystallography studies often combined with HREELS (high resolution electron energy loss spectroscopy) have made possible the determination of the precise structure of these adsorbates. The bond lengths, bond angles, symmetry of the adsorption site
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Phase Transitions at Interfaces: Roughening, Surface Melting, and Triple Point Wettingroperties of thin films, and they are important phenomena in modern interface technology. Each has a long, nearly independent scientific history reaching back to the 19th Century, and we are only now learning how closely they are related. We are finding that much of the early work is inaccurate and
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