Fluorocyclohexane ring inversion in a solid thiourea inclusion compound studied by fluorine-19 magic-angle spinning NMR with high-power proton decoupling

A Nordon, R K Harris, L Yeo, K D M Harris

Research output: Contribution to journalArticle

9 Citations (Scopus)

Abstract

Variable-temperature F-19 magic-angle spinning NMR experiments involving high-power proton decoupling are used to examine the conformational preference and ring-inversion kinetics in the fluorocyclohexane-thiourea inclusion compound.

LanguageEnglish
Pages961-962
Number of pages2
JournalChemical Communications
Issue number10
DOIs
Publication statusPublished - 21 May 1997

Fingerprint

Fluorine Compounds
Thiourea
Magic angle spinning
Thioureas
Fluorine
Protons
Nuclear magnetic resonance
Kinetics
Experiments
Temperature

Keywords

  • spectroscopy
  • monosubstituted cyclohexanes
  • state NMR

Cite this

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title = "Fluorocyclohexane ring inversion in a solid thiourea inclusion compound studied by fluorine-19 magic-angle spinning NMR with high-power proton decoupling",
abstract = "Variable-temperature F-19 magic-angle spinning NMR experiments involving high-power proton decoupling are used to examine the conformational preference and ring-inversion kinetics in the fluorocyclohexane-thiourea inclusion compound.",
keywords = "spectroscopy, monosubstituted cyclohexanes, state NMR",
author = "A Nordon and Harris, {R K} and L Yeo and Harris, {K D M}",
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Fluorocyclohexane ring inversion in a solid thiourea inclusion compound studied by fluorine-19 magic-angle spinning NMR with high-power proton decoupling. / Nordon, A ; Harris, R K ; Yeo, L ; Harris, K D M .

In: Chemical Communications, No. 10, 21.05.1997, p. 961-962.

Research output: Contribution to journalArticle

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AB - Variable-temperature F-19 magic-angle spinning NMR experiments involving high-power proton decoupling are used to examine the conformational preference and ring-inversion kinetics in the fluorocyclohexane-thiourea inclusion compound.

KW - spectroscopy

KW - monosubstituted cyclohexanes

KW - state NMR

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