LC-NMR and Other Hyphenated NMR Techniques : Overview and Applications
by Silva Elipe, Maria V.-
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Summary
Author Biography
Table of Contents
| Preface | p. xi |
| Abbreviations, Symbols, and Units | p. xv |
| Basic Concepts of NMR Spectroscopy | p. 1 |
| Introduction | p. 1 |
| Basic Knowledge Regarding the Physics of NMR Spectroscopy | p. 2 |
| Basic Parameters for NMR Interpretation | p. 7 |
| Chemical Shift | p. 8 |
| Spin-Spin Coupling Constants | p. 13 |
| Spin Systems | p. 20 |
| Signal Intensities | p. 21 |
| Bond Correlations | p. 23 |
| Spatial Correlations | p. 27 |
| Other Topics | p. 30 |
| Conclusions | p. 35 |
| References | p. 36 |
| Historical Development of NMR and LC-NMR | p. 39 |
| Introduction | p. 39 |
| Historical Development of NMR | p. 39 |
| Historical Development of LC-NMR | p. 46 |
| Historical Development of Other Analytical Techniques Hyphenated with NMR | p. 49 |
| Current Trends | p. 52 |
| References | p. 52 |
| Basic Technical Aspects and Operation of LC-NMR and LC-MS-NMR | p. 59 |
| Introduction | p. 59 |
| Technical Considerations Regarding LC-NMR | p. 59 |
| Solvent Compatibility | p. 60 |
| Solvent Suppression | p. 61 |
| NMR Flow Cell | p. 62 |
| LC-NMR Sensitivity | p. 64 |
| Technical Considerations Regarding LC-MS-NMR | p. 65 |
| Deuterated Solvents | p. 66 |
| Modes of Operation of LC-NMR | p. 66 |
| On-Flow Mode | p. 67 |
| Stop-Flow Mode | p. 67 |
| Time-Sliced Mode | p. 77 |
| Loop Collection Mode | p. 77 |
| Modes of Operation of LC-MS-NMR | p. 77 |
| On-Flow Mode | p. 80 |
| Stop-Flow Mode | p. 87 |
| Other Modes of Operation | p. 87 |
| Challenging Considerations | p. 89 |
| Air Bubbles | p. 89 |
| Carryover with and Without an Autosampler | p. 90 |
| Sample Solubility and Precipitation | p. 90 |
| Flow Cell and System Cleaning | p. 91 |
| Flow Rate and Magnetic Susceptibility | p. 91 |
| Quantitation | p. 92 |
| Conclusions | p. 92 |
| References | p. 93 |
| Applications of LC-NMR | p. 95 |
| Introduction | p. 95 |
| Applications of LC-NMR | p. 96 |
| Natural Products | p. 96 |
| Drug Metabolism | p. 102 |
| Drug Discovery | p. 108 |
| Impurity Characterization | p. 111 |
| Degradation Products | p. 112 |
| Food Analysis | p. 115 |
| Polymers | p. 118 |
| Metabolomics and Metabonomics | p. 118 |
| Isomers, Tautomers, and Chiral Compounds | p. 119 |
| Others Areas | p. 120 |
| Conclusions and Future Trends | p. 120 |
| References | p. 121 |
| Applications of LC-MS-NMR | p. 131 |
| Introduction | p. 131 |
| Applications of LC-MS-NMR | p. 132 |
| Natural Products | p. 132 |
| Drug Metabolism | p. 134 |
| Drug Discovery and Development | p. 135 |
| Metabolomics and Metabonomics | p. 136 |
| Others Areas | p. 139 |
| Conclusions and Future Trends | p. 139 |
| References | p. 140 |
| Hyphenation of NMR with Other Analytical Separation Techniques | p. 143 |
| Introduction | p. 143 |
| GC-NMR | p. 144 |
| GPC-NMR | p. 144 |
| SEC-NMR | p. 145 |
| SFC-NMR | p. 146 |
| SFE-NMR | p. 147 |
| CE-NMR | p. 147 |
| CEC-NMR | p. 149 |
| CZE-NMR | p. 150 |
| cITP-NMR | p. 150 |
| CapLC-NMR | p. 152 |
| SPE-NMR | p. 154 |
| SPE-MS-NMR | p. 159 |
| Conclusions and Future Trends | p. 167 |
| References | p. 168 |
| Special Topics and Applications Related to LC-NMR | p. 179 |
| Introduction | p. 179 |
| Off-Line Versus Online NMR for Structural Elucidation | p. 180 |
| Cases Solved Off-Line | p. 180 |
| Cases Solved Online | p. 186 |
| Analysis of Chiral Molecules by NMR | p. 188 |
| Classical Approach: Off-Line | p. 189 |
| Nonclassical Approach: Online | p. 190 |
| Monitoring Chemical Reactions In Situ | p. 190 |
| Classical Approach: Off-Line | p. 191 |
| Nonclassical Approach: Online | p. 194 |
| Analysis of Mixtures Off-Line, Online, and by Other NMR Methodologies | p. 196 |
| Traditional Analysis of Mixtures by Off-Line HPLC and NMR | p. 196 |
| Online NMR Analysis of Mixtures | p. 203 |
| Other NMR Methodologies That Mimic LC-NMR Separation | p. 208 |
| Current Trends | p. 210 |
| References | p. 211 |
| Index | p. 217 |
| Table of Contents provided by Ingram. All Rights Reserved. |
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