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Titlebook: Solid-State NMR IV Methods and Applications of Solid-State NMR; Methods and Applicat Bernhard Blümich (Lehrstuhl für Makromolekulare Ch Boo

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书目名称Solid-State NMR IV Methods and Applications of Solid-State NMR
副标题Methods and Applicat
编辑Bernhard Blümich (Lehrstuhl für Makromolekulare Ch
视频video
丛书名称NMR Basic Principles and Progress
图书封面Titlebook: Solid-State NMR IV Methods and Applications of Solid-State NMR; Methods and Applicat Bernhard Blümich (Lehrstuhl für Makromolekulare Ch Boo
描述Solid-State NMR is a branch of Nuclear Magnetic Resonance which is presently experiencing a phase of strongly increasing popularity. The most striking evidence is the large number of contributions from Solid-State Resonance at NMR meetings, approaching that ofliquid­ state resonance. Important progress can be observed in the areas of methodological developments and applications to organic and inorganic matter. One volume devoted to more or less one of each of these areas has been published in the preceding three issues. This volume can be considered an addendum to this series. Selected methods and applications of Solid-State NMR are featured in three chapters. The first one treats the recoupling of dipolar interactions in solids, which are averaged by fast sample rotation. Following an introduction to effective Hamiltonians and Floquet theory, different types of experiment such as rotary resonance, dipolar chemical shift correlation spectroscopy, rotational resonance and multipulse recoupling are treated in the powerful Floquet formalism. In the second chapter, the different approaches to line narrowing of quadrupolar nuclei are reviewed in a. consistent formulation of double reson
出版日期Book 1994
关键词NMR; crystal; development; experiment; magnetic resonance; nuclear magnetic resonance; nuclear magnetic re
版次1
doihttps://doi.org/10.1007/978-3-642-79127-7
isbn_softcover978-3-642-79129-1
isbn_ebook978-3-642-79127-7Series ISSN 0170-5989
issn_series 0170-5989
copyrightSpringer-Verlag Berlin Heidelberg 1994
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Structural Studies of Noncrystalline Solids Using Solid State NMR. New Experimental Approaches and ng the structural disorder and isotropic behavior typical of the liquid state. Cooling a liquid quickly below its freezing point under conditions that prevent thermodynamic equilibration results in the glassy state at a well-defined temperature T., where collective molecular motion is frozen abruptl
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Structural Studies of Noncrystalline Solids Using Solid State NMR. New Experimental Approaches and prevent thermodynamic equilibration results in the glassy state at a well-defined temperature T., where collective molecular motion is frozen abruptly. This “glass transition temperature” is a thermodynamic necessity and possesses the phenomenological appearance of a second order phase transition [1].
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0170-5989 t striking evidence is the large number of contributions from Solid-State Resonance at NMR meetings, approaching that ofliquid­ state resonance. Important progress can be observed in the areas of methodological developments and applications to organic and inorganic matter. One volume devoted to more
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https://doi.org/10.1007/978-3-642-79127-7NMR; crystal; development; experiment; magnetic resonance; nuclear magnetic resonance; nuclear magnetic re
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978-3-642-79129-1Springer-Verlag Berlin Heidelberg 1994
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