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Titlebook: Catalyst Characterization; Physical Techniques Boris Imelik,Jacques C. Vedrine Book 1994 Springer Science+Business Media New York 1994 Mös

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The Benefits of Modern Efficiency, its sensitivity to the top first layers of solid materials. and to the chemical state of all elements, namely the oxidation state and covalency or ionic types of bondings. The technique suffers from its own physical principle as it must be carried out in a high vacuum. This feature requires cumbers
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https://doi.org/10.1007/978-3-031-09027-1. Here, we are dealing with a newly developed technique which until now has been applied mainly to simple systems. No real catalytic application has yet been investigated, but as a surface technique, its future development is expected to give new insights to catalysis.
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Boris Imelik,Jacques C. VedrineThis book presents a comprehensive view of all catalyst characterization techniques..It is unique in offering both spectroscopic and non-spectroscopic techniques..It is also unique in that any reader
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1574-0447 t deeper levels of understanding, and these have been associated with a continually growing amount of published material. As recentlyas sixty years ago, Rideal and Taylor could still treat the subject comprehen978-1-4757-9591-2978-1-4757-9589-9Series ISSN 1574-0447
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Ferromagnetic Resonance,me as we shall see later on, is about three orders of magnitude greater than the magnetic moment of an electron. As a consequence, a quantum mechanical description of FMR phenomena is not necessary as it is for EPR or NMR spectroscopies. Furthermore, the temperature-dependent magnetization of ferrom
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Auger Electron Spectroscopy,teristic of the electronic levels involved and therefore of the analyzed material. This process was first discovered by Auger. and the ejected electrons are called (.) Auger electrons, where . indicates the deep level ., ..,...) on which has been created the hole which is then filled by an electron
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Small-Angle X-Ray Scattering,forward for a two-phase system, with uniform density in each phase, but much more intricate for multicomponent catalysts. In this case complementary information (electron microscopy, gas adsorption) will be indispensable for interpretation of the scattering data.
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