Description
NMR Spectroscopy in Liquids and Solids
Author: Bakhmutov Vladimir I.
Language: EnglishSubjects for NMR Spectroscopy in Liquids and Solids:
Keywords
NMR Spectrum; NMR Experiment; NMR; Solid State NMR; Nuclear Magnetic Resonance; NMR Relaxation; NMR and Molecular Dynamics: General Principles; NMR Pattern; NMR Spectroscopy in Solutions; Ma NMR Spectrum; NMR Relaxation in Solutions; NMR Probe; Solution NMR; Solid State NMR Experiment; Solid-State NMR Spectroscopy; Isotropic Chemical Shifts; Chemical Shift; NMR Time Scale; NMR Data; 13C NMR Spectrum; Ma NMR; Solid State NMR Spectrum; NMR Technique; Spin Spin Coupling Constant; Chemical Shift Anisotropy; T1 Relaxation; Chemical Shift Tensors; Solid State NMR Study; Quadrupolar Nuclei; Spin Spin Coupling; Magnetic Eld; T1 Relaxation Time
Publication date: 07-2017
· 15.6x23.4 cm · Hardback
Publication date: 09-2016
360 p. · 15.6x23.4 cm · Paperback
Description
/li>Contents
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NMR Spectroscopy in Liquids and Solids provides an introduction of the general concepts behind Nuclear Magnetic Resonance (NMR) and its applications, including how to perform adequate NMR experiments and interpret data collected in liquids and solids to characterize molecule systems in terms of their structure and dynamics.
The book is composed of ten chapters. The first three chapters consider the theoretical basis of NMR spectroscopy, the theory of NMR relaxation, and the practice of relaxation measurements. The middle chapters discuss the general aspects of molecular dynamics and their relationships to NMR, NMR spectroscopy and relaxation studies in solutions, and special issues related to NMR in solutions.
The remaining chapters introduce general principles and strategies involved in solid-state NMR studies, provide examples of applications of relaxation for the determination of molecular dynamics in diamagnetic solids, and discuss special issues related to solid state NMR? including NMR relaxation in paramagnetic solids.
All chapters are accompanied by references and recommended literature for further reading. Many practical examples of multinuclear NMR and relaxation experiments and their interpretations are also presented. The book is ideal for scientists new to NMR, students, and investigators working in the areas of chemistry, biochemistry, biology, pharmaceutical sciences, or materials science.
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