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  • 15N NMR represents a dynamically developing field of NMR spectroscopy capable of offering new and versatile data in many branches of science. Various NMR parameters, for example, 15N chemical shift tensors, 1H-15N coupling constants, and 15N relaxation times, are frequently employed in structural and dynamic studies of various phenomena such as tautomerism, protonation, complexation, hydrogen bonding, N-alkylation, and N-oxidation processes. Approaches for using 15N NMR to investigate these phenomena in organic and inorganic molecules are outlined in this article.
  • 15N NMR represents a dynamically developing field of NMR spectroscopy capable of offering new and versatile data in many branches of science. Various NMR parameters, for example, 15N chemical shift tensors, 1H-15N coupling constants, and 15N relaxation times, are frequently employed in structural and dynamic studies of various phenomena such as tautomerism, protonation, complexation, hydrogen bonding, N-alkylation, and N-oxidation processes. Approaches for using 15N NMR to investigate these phenomena in organic and inorganic molecules are outlined in this article. (en)
Title
  • Magnetic Resonance: 15N NMR Applications
  • Magnetic Resonance: 15N NMR Applications (en)
skos:prefLabel
  • Magnetic Resonance: 15N NMR Applications
  • Magnetic Resonance: 15N NMR Applications (en)
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  • RIV/00216224:14310/10:00042885!RIV11-MSM-14310___
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  • P(LC06030), S, Z(MSM0021622413)
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  • 269187
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  • RIV/00216224:14310/10:00042885
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  • Intermolecular interactions; 15N chemical shift tensor; Protonation; Tautomerism (en)
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  • [4808D8C403BF]
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  • Oxford
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  • vol. 2
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  • Encyclopedia of Spectroscopy and Spectrometry (Second Edition)
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  • Marek, Radek
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number of pages
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  • Academic Press
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  • 978-0-12-374417-3
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  • 14310
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