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Annual Reports on NMR Spectroscopy
1st Edition, Volume 84 - February 23, 2015
Editor: Graham A. Webb
Language: English
Hardback ISBN:9780128021248
9 7 8 - 0 - 1 2 - 8 0 2 1 2 4 - 8
eBook ISBN:9780128023327
9 7 8 - 0 - 1 2 - 8 0 2 3 3 2 - 7
Nuclear magnetic resonance (NMR) is an analytical tool used by chemists and physicists to study the structure and dynamics of molecules. In recent years, no other technique has ga…Read more
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Nuclear magnetic resonance (NMR) is an analytical tool used by chemists and physicists to study the structure and dynamics of molecules. In recent years, no other technique has gained such significance as NMR spectroscopy. It is used in all branches of science in which precise structural determination is required and in which the nature of interactions and reactions in solution is being studied. Annual Reports on NMR Spectroscopy has established itself as a premier means for the specialist and non-specialist alike to become familiar with new techniques and applications of NMR spectroscopy.
This volume of Annual Reports on NMR Spectroscopy focuses on the analytical tools used by chemists and physicists, taken together with other volumes of this series, an excellent account of progress in NMR and its many applications is provided and anyone using NMR will find interest in this Serial
Organic, inorganic, analytical and physical chemists, biochemists, structural biologists, physicists and all those studying and using NMR spectroscopy
Preface
Chapter One: Applications of 1H–15N Long-Range Heteronuclear Shift Correlation and 15N NMR in Alkaloid Chemistry
Abstract
1 Introduction
2 Previous Reviews
3 Experiments and Parametric Considerations
4 Computer-Assisted Structure Elucidation—The Impact of 15N Data
5 Covariance Calculation of 13C–15N Heteronuclear Shift Correlation Spectra
6 Applications of Long-Range 1H–15N Heteronuclear Shift Correlation to Alkaloids not Previously Reviewed
7 Applications of Long-Range 1H–15N Heteronuclear Shift Correlation to Alkaloids
8 Miscellaneous Alkaloid Structures
9 Alkaloid Structures Revised with the Aid of 1H–15N HMBC Data