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Titlebook: Chemisorption and Reactivity on Supported Clusters and Thin Films:; Towards an Understan Richard M. Lambert,Gianfranco Pacchioni Book 1997

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书目名称Chemisorption and Reactivity on Supported Clusters and Thin Films:
副标题Towards an Understan
编辑Richard M. Lambert,Gianfranco Pacchioni
视频videohttp://file.papertrans.cn/225/224772/224772.mp4
丛书名称NATO Science Series E:
图书封面Titlebook: Chemisorption and Reactivity on Supported Clusters and Thin Films:; Towards an Understan Richard M. Lambert,Gianfranco Pacchioni Book 1997
描述Heterogeneous catalysis provides the backbone of the world‘schemical and oil industries. The innate complexity of practicalcatalytic systems suggests that useful progress should be achievableby investigating key aspects of catalysis by experimental studies onidealised model systems. Thin films and supported clusters are twopromising types of model system that can be used for this purpose,since they mimic important aspects of the properties of practicaldispersed catalysts. Similarly, appropriate theoretical studies ofchemisorption and surface reaction clusters or extended slab systemscan provide valuable information on the factors that underlie bondingand catalytic activity. This volume describes such experimental andtheoretical approaches to the surface chemistry and catalyticbehaviour of metals, metal oxides and metal/metal oxide systems. .An introduction to the principles and main themes of heterogeneouscatalysis is followed by detailed accounts of the application ofmodern experimental and theoretical techniques to fundamentalproblems. The application of advanced experimental methods iscomplemented by a full description of theoretical procedures,including Hartree-Fock, density fu
出版日期Book 1997
关键词Chemisorption; Surface science; adsorption; catalysis; thin films
版次1
doihttps://doi.org/10.1007/978-94-015-8911-6
isbn_softcover978-90-481-4807-3
isbn_ebook978-94-015-8911-6Series ISSN 0168-132X
issn_series 0168-132X
copyrightSpringer Science+Business Media B.V. 1997
The information of publication is updating

书目名称Chemisorption and Reactivity on Supported Clusters and Thin Films:影响因子(影响力)




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Thin Films as Model Catalysts,properties of the catalyst with the observed catalytic behavior. In the last few decades, a diversity of ultrahigh vacuum (UHV) based surface sensitive characterization methods have been developed that allow for the detailed study of stuctural, compositional, and electronic properties at the atomic
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Metal Deposits on Thin Well Ordered Oxide Films: Morphology, Adsorption and Reactivity,The studies on the clean surfaces are the basis for investigations of transition metal particles deposited onto these oxide surfaces: Ag, Pd, Rh and Pt have been deposited on thin alumina films and the morphology has been determined via STM and SPA-LEED Photoelectron spectroscopy was applied to inve
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Size Effects in Heterogeneous Catalysis,et understood. A new way to investigate the origin of the size effects is to use supported model catalysts. They are prepared by vapour growth, under UHV, on oxide single crystals. By epitaxy at high temperature, homogeneous collections of clusters are obtained. The various techniques available to c
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Supported Clusters, Structure, Reactivity and Microscopic Processes in Catalysis,aving neibouring multimetallic centers. These metal centers are chemically accomodated by appropriate ligand molecules such as carbonyls, phosphines, aryls and olefins. The similarity between very small metal particles and molecular clusters was firsly proposed by Muetterties(1) and Chini(2) on the
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Quantitative Determination of Molecular Adsorbate Structures, Catalyst literature makes frequent reference to the idea of an .,yet there is rarely any microscopic understanding of what is meant by such a phrase. Local bonding geometries are probably of particular importance in so-called . reactions, because although this phrase is often used in relation to re
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The Structure and Reactivity of TiO2(110) Supported Palladium and Rhodium,RS of adsorbed CO. The RAIRS is sensitive to the local dielectric response in the neighbourhood of the CO probe molecule, and together with its fingerprint properties allows a characterisation of the size and morphology of the metal phases, particularly when combined with the other complimentary tec
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