Modern NMR spectroscopy : a guide for chemists

書誌事項

Modern NMR spectroscopy : a guide for chemists

Jeremy K.M. Sanders and Brian K. Hunter

Oxford University Press, 1993

2nd ed

  • pbk.

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注記

Includes bibliographical references and index

内容説明・目次

巻冊次

ISBN 9780198555667

内容説明

Many chemists probably do not understand the full potential of nuclear magnetic resonance spectroscopy, and recent advances have led to an array of new techniques and acronyms. This text provides a non-mathematical, descriptive approach to NMR spectroscopy, taking examples from organic, inorganic and biological chemistry. It contains practical advice about the acquisition and use of spectra. Starting from a simple "one pulse" sequence, the text employs a building block approach to lead naturally to multiple pulse and two-dimensional NMR. One- and two-dimensional methods are integrated in three chapters which show how to solve problems by making connections between spins through bonds, through space, or through exchange. There are also chapters on spectrum editing and solids. The final chapter contains a case history which attempts to weave the many strands of the text into a coherent strategy.;This second edition reflects the advances in NMR, and there is greater emphasis on inorganic nuclei. Some two-colour spectra are used and the treatment of heteronuclear experiments has moved from direct to "inverse" detection. Many new spectra and examples have been added, and the literature
巻冊次

pbk. ISBN 9780198555674

内容説明

Nuclear magnetic resonsance (NMR) spectrocopy is the most powerful research tool used in chemistry today, but many chemists have yet to realize its true potential. Recent advances in NMR have led to a formidable array of new techniques - and acronyms - which leaves even the professional spectroscopist bewildered. How, then, can chemists decide which approach will solve their particular structural or mechanistic problem? This book provides a non-mathematical, descriptive approach to modern NMR spectroscopy, taking examples from organic, inorganic, and biological chemistry. It also contains much practical advice about the acquisition and use of spectra. Starting from the simple 'one pulse' sequence, the text employs a 'building block' approach to lead naturally to multiple pulse and two-dimensional NMR. Spectra of readily available compounds illustrate each technique. One- and two- dimensional methods are integrated in three chapters which show how to solve problems by making connections between spins through bonds, through space, or through exchange. There are also chapters on spectrum editing and solids. The final chapter contains a case history which attempts to weave the many strands of the text into a coherent strategy. This second edition reflects the progress made by NMR in the past few years; there is a greater emphasis on inorganic nuclei; some two-colour spectra are used; the treatment of heteronuclear experiments has moved from direct to 'inverse' detection; many new examples and spectra have been included; and the literature to early 1992 has been covered. An accompanying text, Modern NMR spectroscopy: A workbook of chemical problems, by Jeremy Sanders, Edwin Constable, and Brian Hunter, is available from OUP. Using a combination of worked examples and set problems, this workbook provides a practical guide to the accurate interpretation of NMR spectra, which will be of value to students and professional scientists alike.

目次

  • Introduction
  • 1. The one-pulse experiment
  • 2. Spin decoupling and difference spectroscopy
  • 3. The second dimension
  • 4. Connections through bonds
  • 5. Connections through space
  • 6. Connections through chemical exchange
  • 7. Editing
  • 8. Solids
  • 9. Sucrose octa-acetate: a case history
  • Appendix: Symmetry, non-equivalence, and restricted rotation
  • Index

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