1978Journal of the Chemical Society Chemical CommunicationsRequires access

Long-range deuterium-induced 13C nuclear magnetic resonance isotope shifts for single assignment and determination of deuteriation site in cyclodecanone isotopomers

Félix W. Wehrli, Dragoslav Jeremi, Mihailo Lj. Mihailovíć, Slobodan Milosavljevi

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Abstract

The incremental 13C chemical shifts observed upon replacement of protons by deuterons in cyclo-decanones give line assignments which are not otherwise obtainable; apart from directly bonded carbon, isotope shifts were detected across 2, 3, 4, 5, and 6 bonds.

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The incremental 13C chemical shifts observed upon replacement of protons by deuterons in cyclo-decanones give line assignments which are not otherwise obtainable; apart from directly bonded carbon, isotope shifts were detected across 2, 3, 4, 5, and 6 bonds.

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Available abstract

The incremental 13C chemical shifts observed upon replacement of protons by deuterons in cyclo-decanones give line assignments which are not otherwise obtainable; apart from directly bonded carbon, isotope shifts were detected across 2, 3, 4, 5, and 6 bonds.

Key concepts: Isotopomers, Deuterium, Isotope, Chemistry, Kinetic isotope effect, Range (aeronautics), Carbon-13, Isotopes of carbon

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Long-range deuterium-induced 13C nuclear magnetic resonance isotope shifts for single assignment and determination of deuteriation site in cyclodecanone isotopomers — Research Paper | ScholarLens