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Titlebook: High Pressure NMR; Jiri Jonas Conference proceedings 1991 Springer-Verlag Berlin Heidelberg 1991 Diffusion.Magnetische Kernresonanz.NMR.St

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发表于 2025-3-21 18:36:50 | 显示全部楼层 |阅读模式
书目名称High Pressure NMR
编辑Jiri Jonas
视频video
丛书名称NMR Basic Principles and Progress
图书封面Titlebook: High Pressure NMR;  Jiri Jonas Conference proceedings 1991 Springer-Verlag Berlin Heidelberg 1991 Diffusion.Magnetische Kernresonanz.NMR.St
描述In recent years, there has been a major expansion of high pressure research providing unique information about systems of interest to a wide range of scientific disciplines. Since nuclear magnetic resonance has been applied to a wide spec­ trum of problems in chemistry, physics and biochemistry, it is not surprising to find that high pressure NMR techniques have also had many applications in these fields of science. Clearly, the high information content of NMR experiments combined with high pressure provides a powerful tool in modern chem­ istry. It is the aim of this monograph, in the series on NMR Basic Principles and Progress, to illustrate the wide range of prob­ lems which can be successfully studied by high pressure NMR. Indeed, the various contributions in this volume discuss studies of interest to physics, chemical physics, biochemistry, and chemical reaction kinetics. In many different ways, this monograph demonstrates the power of modern experimental and theoretical techniques to investigate very complex systems. The first contribution, by D. Brinkman, deals with NMR and NQR studies of superionic conductors and high-Tc supercon­ ductors at high pressure. Pressure effects
出版日期Conference proceedings 1991
关键词Diffusion; Magnetische Kernresonanz; NMR; Strukturaufklärung; biochemistry; chemical reaction; kinetics; nu
版次1
doihttps://doi.org/10.1007/978-3-642-75926-0
isbn_softcover978-3-642-75928-4
isbn_ebook978-3-642-75926-0Series ISSN 0170-5989
issn_series 0170-5989
copyrightSpringer-Verlag Berlin Heidelberg 1991
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High-Pressure NMR Investigations of Motion and Phase Transitions in Molecular Systems,sotope effects in the p-T phase diagram. The effects on the transition between the orientationally disordered phase I, the partially ordered phase II, the ordered phase III and the high-pressure phase IV are analysed on the basis of proton and deuteron spin-lattice relaxation and line-shape data.
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Conference proceedings 1991scientific disciplines. Since nuclear magnetic resonance has been applied to a wide spec­ trum of problems in chemistry, physics and biochemistry, it is not surprising to find that high pressure NMR techniques have also had many applications in these fields of science. Clearly, the high information
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0170-5989 range of scientific disciplines. Since nuclear magnetic resonance has been applied to a wide spec­ trum of problems in chemistry, physics and biochemistry, it is not surprising to find that high pressure NMR techniques have also had many applications in these fields of science. Clearly, the high in
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Solid-State NMR Studies at High Pressure,titut employing hydrostatic pressure up to 0.7 GPa. The experiments concern superionic conductors (RbAg.I.,KAg.I., Ag.SBr, Li.N) and the high-. . superconductor YBa.Cu.O.. The discussion includes the following topics: determination of pressure-temperature phase diagrams; detection of new phases; pre
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High-Pressure NMR Investigations of Motion and Phase Transitions in Molecular Systems,ion and measurement of high pressure and examples of high-pressure NMR probes are described. The use of NMR techniques is shown, in particular on the high-pressure properties of solid methane, in which the quantum effect in the molecular orientation and the effect of spin isomerism result in large i
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High Pressure NMR Studies of the Dynamics in Liquids and Complex Systems, polymers and disordered solids. After a brief introduction discussing the important reasons for using pressure as an experimental variable in NMR studies of liquids, the section on instrumentation deals with high resolution, high pressure NMR probes and other specialized high pressure NMR technique
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Glass Cell Method for High-Pressure, High-Resolution NMR Measurements. Applications to the Studies mmercially available high-resolution spectrometer. Examples of the experimental application of this simple technique to the studies of pressure-induced structural changes in individual molecules is also presented.
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