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Liquid and gas phase NMR spectra of 13CH3 13CHO acetaldehyde

Autor
Wikieł, Agata J.
Makulski, Włodzimierz
Data publikacji
2018
Abstrakt (EN)

The gas phase NMR experiments perform a vital role in establishing the magnetic shielding and spin-spin coupling constants which are free from intermolecular interactions, equivalent to the parameter of isolated molecules. This work is concerned with an acetaldehyde molecule. Small amounts of acetaldehyde 13CH3 13CHO in gaseous matrices of CO2 and Xe were studied using high-precision 1H and 13C NMR measurements. Results were extrapolated to the zero-density limit permitting the determinations of the 1H and 13C absolute nuclear magnetic shielding of an isolated acetaldehyde molecule. The difference between the experimental and recent theoretical DFT results is discussed. Several samples of 13CH3 13CHO dissolved in popular organic and inorganic solvents were also investigated. Gas-to-solution shifts show the influence of the association process when acetaldehyde is transferred from gas to liquid state. Several spin-spin coupling constants in the gas phase and in different solvents were precisely measured.

Słowa kluczowe EN
1H and 13C shielding
Acetaldehyde
Gas phase NMR
Intermolecular interactions
Dyscyplina PBN
nauki chemiczne
Czasopismo
Journal of Molecular Structure
Tom
1152
Strony od-do
145-153
ISSN
0022-2860
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