LC-NMR and Other Hyphenated NMR Techniques : Overview and Applications

by
Edition: 1st
Format: Hardcover
Pub. Date: 2011-12-20
Publisher(s): Wiley
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Summary

This practical guide provides a basic overview of the pros and cons of NMR spectroscopy as both a hyphenated and non-hyphenated technique. The book begins with a description of basic NMR concepts for the structural elucidation of organic compounds and then details the historical development of NMR and hyphenated NMR in the structural elucidation world, followed by applications of hyphenated NMR as LC-NMR and LC-MS-NMR in industry and academia. It also contains updated information on the latest advancements and applications of LC-NMR in such areas as degradation products, drug metabolism, food analysis, and drug discovery. An essential resource for scientists in industry and academia who work in the areas of organic chemistry, medicinal chemistry, process chemistry, and analytical chemistry.

Author Biography

Maria Victoria Silva Elipe, PhD, has worked as a principal scientist and NMR expert in the Structural Elucidation Group at Amgen Inc., since 2003. She has over fourteen years of experience in the NMR field for the pharmaceutical industry. She has written over forty articles and has presented at twenty conferences in the area of NMR Spectroscopy.

Table of Contents

Prefacep. xi
Abbreviations, Symbols, and Unitsp. xv
Basic Concepts of NMR Spectroscopyp. 1
Introductionp. 1
Basic Knowledge Regarding the Physics of NMR Spectroscopyp. 2
Basic Parameters for NMR Interpretationp. 7
Chemical Shiftp. 8
Spin-Spin Coupling Constantsp. 13
Spin Systemsp. 20
Signal Intensitiesp. 21
Bond Correlationsp. 23
Spatial Correlationsp. 27
Other Topicsp. 30
Conclusionsp. 35
Referencesp. 36
Historical Development of NMR and LC-NMRp. 39
Introductionp. 39
Historical Development of NMRp. 39
Historical Development of LC-NMRp. 46
Historical Development of Other Analytical Techniques Hyphenated with NMRp. 49
Current Trendsp. 52
Referencesp. 52
Basic Technical Aspects and Operation of LC-NMR and LC-MS-NMRp. 59
Introductionp. 59
Technical Considerations Regarding LC-NMRp. 59
Solvent Compatibilityp. 60
Solvent Suppressionp. 61
NMR Flow Cellp. 62
LC-NMR Sensitivityp. 64
Technical Considerations Regarding LC-MS-NMRp. 65
Deuterated Solventsp. 66
Modes of Operation of LC-NMRp. 66
On-Flow Modep. 67
Stop-Flow Modep. 67
Time-Sliced Modep. 77
Loop Collection Modep. 77
Modes of Operation of LC-MS-NMRp. 77
On-Flow Modep. 80
Stop-Flow Modep. 87
Other Modes of Operationp. 87
Challenging Considerationsp. 89
Air Bubblesp. 89
Carryover with and Without an Autosamplerp. 90
Sample Solubility and Precipitationp. 90
Flow Cell and System Cleaningp. 91
Flow Rate and Magnetic Susceptibilityp. 91
Quantitationp. 92
Conclusionsp. 92
Referencesp. 93
Applications of LC-NMRp. 95
Introductionp. 95
Applications of LC-NMRp. 96
Natural Productsp. 96
Drug Metabolismp. 102
Drug Discoveryp. 108
Impurity Characterizationp. 111
Degradation Productsp. 112
Food Analysisp. 115
Polymersp. 118
Metabolomics and Metabonomicsp. 118
Isomers, Tautomers, and Chiral Compoundsp. 119
Others Areasp. 120
Conclusions and Future Trendsp. 120
Referencesp. 121
Applications of LC-MS-NMRp. 131
Introductionp. 131
Applications of LC-MS-NMRp. 132
Natural Productsp. 132
Drug Metabolismp. 134
Drug Discovery and Developmentp. 135
Metabolomics and Metabonomicsp. 136
Others Areasp. 139
Conclusions and Future Trendsp. 139
Referencesp. 140
Hyphenation of NMR with Other Analytical Separation Techniquesp. 143
Introductionp. 143
GC-NMRp. 144
GPC-NMRp. 144
SEC-NMRp. 145
SFC-NMRp. 146
SFE-NMRp. 147
CE-NMRp. 147
CEC-NMRp. 149
CZE-NMRp. 150
cITP-NMRp. 150
CapLC-NMRp. 152
SPE-NMRp. 154
SPE-MS-NMRp. 159
Conclusions and Future Trendsp. 167
Referencesp. 168
Special Topics and Applications Related to LC-NMRp. 179
Introductionp. 179
Off-Line Versus Online NMR for Structural Elucidationp. 180
Cases Solved Off-Linep. 180
Cases Solved Onlinep. 186
Analysis of Chiral Molecules by NMRp. 188
Classical Approach: Off-Linep. 189
Nonclassical Approach: Onlinep. 190
Monitoring Chemical Reactions In Situp. 190
Classical Approach: Off-Linep. 191
Nonclassical Approach: Onlinep. 194
Analysis of Mixtures Off-Line, Online, and by Other NMR Methodologiesp. 196
Traditional Analysis of Mixtures by Off-Line HPLC and NMRp. 196
Online NMR Analysis of Mixturesp. 203
Other NMR Methodologies That Mimic LC-NMR Separationp. 208
Current Trendsp. 210
Referencesp. 211
Indexp. 217
Table of Contents provided by Ingram. All Rights Reserved.

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