E-Book, Englisch, Band Volume 34, 322 Seiten
Reihe: New Developments in NMR
Garbacz Physical Principles of Chirality in NMR
1. Auflage 2024
ISBN: 978-1-83916-959-5
Verlag: Royal Society of Chemistry
Format: EPUB
Kopierschutz: Adobe DRM (»Systemvoraussetzungen)
E-Book, Englisch, Band Volume 34, 322 Seiten
Reihe: New Developments in NMR
ISBN: 978-1-83916-959-5
Verlag: Royal Society of Chemistry
Format: EPUB
Kopierschutz: Adobe DRM (»Systemvoraussetzungen)
How can we study one of the most elusive molecular properties, chirality, using nuclear interactions with the magnetic field that are apparently insensitive to handedness? This book answers this question from the physicochemical point of view by providing a clear, coherent, and comprehensive review of methods used in NMR studies of chirality.
Presented arguments based on fundamental physical and chemical laws and in-depth descriptions of new methods utilizing purely physical interactions are mainly addressed to spectroscopists in both academia and industry. The introductory chapters provide the reader with the basics of NMR spectroscopy as a tool for the study of chiral compounds, and those more interested in the methods of chiral discrimination will benefit from the brief description of their common points and reasons why some of them may or may not work. In the following chapters, the book shows rapid progress in a newly emerging field of chirality-sensitive NMR, in particular, a search for effects that give direct information about the absolute configuration of a molecule.
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Weitere Infos & Material
Introduction to Molecular Chirality;Introduction to Molecular Chirality;The Concept of Chirality from a Mathematical Perspective;NMR Discrimination of Chiral Organic Compounds;A Brief Overview of the Chiral Agents;Nuclear Magnetic Shielding and Chirality;Antisymmetric Nuclear Magnetic Shielding as an Indicator of Molecular Chirality;Chirality-sensitive Effects Induced by Antisymmetric Spin-Spin Coupling;Magnetochiral Dichroism in Nuclear Magnetic Resonance: Traveling Wave Enantioselective NMR;Hyperpolarization Methods and Their Applications for the Investigation and Discrimination of Enantiomers in NMR