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Titlebook: Synchrotron Radiation in Chemistry and Biology I; D. Bazin,M. Benfatto,M. Verdaguer Conference proceedings 1988 Springer-Verlag Berlin Hei

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XANES in condensed systems, oxides as CeO. and the new high T. oxide superconsuctors. These effects require to go beyond the one-electron aproximation discussed here but give important information on the local electronic structure of materials.
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X-ray absorption studies of liquids: Structure and reactivity of metal complexes in solution and X-ents of EXAFS of organometallics in hydrocarbon solution is described. The special feature of the technique. EXAFS measurement under the condition of total X-ray absorption, is discussed in some details. Current developments is related areas are also noted.
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X-ray studies on biological membranes using synchrotron radiation,g synchrotron radiation on phospholipid model systems and functional membranes (sarcoplasmic reticulum membrane). It is shown that such studies bear great promise in entering the millisecond time domain and bridging the existing gap between static structural information and the wealth of dynamic data derived from spectroscopic methods.
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X-ray synchrotron radiation and inorganic structural chemistry, the main properties of this light source and some characteristics of the storage rings, two main applications are reviewed. The first one concerns X-ray scattering techniques. The study of very tiny single crystals and the improvements in the field of powder structure investigations are underlined.
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Characterization of heterogeneous catalysts: The EXAFS tool,like Davy or Thenard. This pioneer work led Berzelius and Mitscherlich to define the concept of “decomposition of species by contact under a catalytic force”. Since then much work has been done in order to understand the behavior of these small transition metal clusters which are able to promote som
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