Ein kompletter Leitfaden der NMR-Spektroskopie, der nur ein Grundwissen in Chemie voraussetzt! Ausgehend von den theoretischen Grundlagen werden Strategien zur Analyse von Struktur und Dynamik von Molekülen bis hin zur chemisch induzierten dynamischen Kernpolarisation und zur mehrdimensionalen NMR erläutert. Nuclear magnetic resonance (NMR) spectroscopy is the study of molecular structure. It is a growing technique particularly in biochemistry and medicinal chemistry, that provides detailed information on molecular structure and dynamics that other methods cannot. Assuming only a first-year…mehr
Ein kompletter Leitfaden der NMR-Spektroskopie, der nur ein Grundwissen in Chemie voraussetzt! Ausgehend von den theoretischen Grundlagen werden Strategien zur Analyse von Struktur und Dynamik von Molekülen bis hin zur chemisch induzierten dynamischen Kernpolarisation und zur mehrdimensionalen NMR erläutert. Nuclear magnetic resonance (NMR) spectroscopy is the study of molecular structure. It is a growing technique particularly in biochemistry and medicinal chemistry, that provides detailed information on molecular structure and dynamics that other methods cannot. Assuming only a first-year chemistry course for background, this practical guide describes all the necessary details of NMR spectral analysis.
ROGER S. MACOMBER was Professor of Chemistry at the University of Cincinnati, Ohio, from 1969-1997, and is currently Professor of Chemistry at Pepperdine University. He is the author of nearly 100 scientific and professional articles, as well as several monographs, including The Vocabulary of Organic Chemistry, NMR Spectroscopy: Essential Theory and Practice, and Organic Chemistry, Volumes I and II.
Inhaltsangabe
Spectroscopy: Some Preliminary Considerations Magnetic Properties of Nuclei Obtaining an NMR Spectrum Correlating Proton Chemical Shifts with Molecular Structure First-Order (Weak) Spin-Spin Coupling Factors that Influence et Sign and Magnitude of J: Second-Order (Strong) Coupling Effects The Study of Chemically Induced Dynamic Nuclear Polarization 2D NMR NMR Studies of Biologically Important Molecules Appendices.
Spectroscopy: Some Preliminary Considerations Magnetic Properties of Nuclei Obtaining an NMR Spectrum Correlating Proton Chemical Shifts with Molecular Structure First-Order (Weak) Spin-Spin Coupling Factors that Influence et Sign and Magnitude of J: Second-Order (Strong) Coupling Effects The Study of Chemically Induced Dynamic Nuclear Polarization 2D NMR NMR Studies of Biologically Important Molecules Appendices.
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