High-resolution Nmr Techniques In Organic Chemistry by Timothy D.w. ClaridgeHigh-resolution Nmr Techniques In Organic Chemistry by Timothy D.w. Claridge

High-resolution Nmr Techniques In Organic Chemistry

byTimothy D.w. ClaridgeEditorTimothy D.w. Claridge

Paperback | May 13, 2016

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High-Resolution NMR Techniques in Organic Chemistry, Third Editiondescribes the most important NMR spectroscopy techniques for the structure elucidation of organic molecules and the investigation of their behaviour in solution. Appropriate for advanced undergraduate and graduate students, research chemists and NMR facility managers, this thorough revision covers practical aspects of NMR techniques and instrumentation, data collection, and spectrum interpretation. It describes all major classes of one- and two-dimensional NMR experiments including homonuclear and heteronuclear correlations, the nuclear Overhauser effect, diffusion measurements, and techniques for studying protein ligand interactions. A trusted authority on this critical expertise,High-Resolution NMR Techniques in Organic Chemistry,Third Editionis an essential resource for every chemist and NMR spectroscopist.

Tim Claridge has over 25 years of practical experience in NMR Spectroscopy and is presently Professor of Magnetic Resonance and Director of NMR Spectroscopy for Organic Chemistry and Chemical Biology in the Department of Chemistry at the University of Oxford. His interest in NMR was ignited as an undergraduate student of Chemistry and ...
Title:High-resolution Nmr Techniques In Organic ChemistryFormat:PaperbackDimensions:552 pages, 8.75 × 6.35 × 0.68 inPublished:May 13, 2016Publisher:Elsevier ScienceLanguage:English

The following ISBNs are associated with this title:

ISBN - 10:0080999867

ISBN - 13:9780080999869

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Table of Contents

Preface 1 Introduction 2 Introducing High-Resolution NMR 3 Practical Aspects of High-Resolution NMR 4 One-Dimensional Techniques 5 Introducing Two-Dimensional and Pulsed Field Gradient NMR 6 Correlations Through the Chemical Bond I: Homonuclear Shift Correlation 7 Correlations Through the Chemical Bond II: Heteronuclear Shift Correlation 8 Separating Shifts and Couplings: J-Resolved and Pure Shift Spectroscopy 9 Correlations Through Space: The Nuclear Overhauser Effect 10 Diffusion NMR Spectroscopy 11 Protein Ligand Screening by NMR 12 Experimental Methods 13 Structure Elucidation and Spectrum Assignment Appendix Subject Index