Issue 6, 2022

Determination of the semiexperimental equilibrium structure of 2-acetylthiophene in the presence of methyl internal rotation and substituent effects compared to thiophene

Abstract

The microwave spectra of thiophene and 2-acetylthiophene were recorded in the frequency range from 2 to 40 GHz using two molecular jet Fourier transform microwave spectrometers. For 2-acetylthiophene, two conformers with a syn and an anti orientation of the S1–C2 and C6[double bond, length as m-dash]O bonds (with respect to the C2–C6 bond) were identified, and the syn-conformer was more stable. The spectra of the 34S- and 13C-isotopologues of syn-2-acetylthiophene were also assigned, and the semiexperimental equilibrium structure could be determined. Compared to thiophene, at the substitution position, the S1–C2 and C2[double bond, length as m-dash]C3 bond lengths both increase by about 0.007 Å, and the bond angle S1–C2[double bond, length as m-dash]C3 decreases by 0.06°, noticeably larger than the experimental uncertainties. A–E torsional splittings were observed due to internal rotation of the methyl group hindered by a barrier height of 330.187(35) and 295.957(17) cm−1 for the syn-conformer and the anti-conformer, respectively. Geometry and internal rotation parameters are compared with those of related thiophene derivatives, as well as those of furan and 2-acetylthiophene to gain a better understanding of structure determination in the presence of methyl internal rotation.

Graphical abstract: Determination of the semiexperimental equilibrium structure of 2-acetylthiophene in the presence of methyl internal rotation and substituent effects compared to thiophene

Supplementary files

Article information

Article type
Paper
Submitted
29 Sep 2021
Accepted
14 Jan 2022
First published
17 Jan 2022

Phys. Chem. Chem. Phys., 2022,24, 3804-3815

Determination of the semiexperimental equilibrium structure of 2-acetylthiophene in the presence of methyl internal rotation and substituent effects compared to thiophene

C. Dindić, J. Ludovicy, V. Terzi, A. Lüchow, N. Vogt, J. Demaison and H. V. L. Nguyen, Phys. Chem. Chem. Phys., 2022, 24, 3804 DOI: 10.1039/D1CP04478H

To request permission to reproduce material from this article, please go to the Copyright Clearance Center request page.

If you are an author contributing to an RSC publication, you do not need to request permission provided correct acknowledgement is given.

If you are the author of this article, you do not need to request permission to reproduce figures and diagrams provided correct acknowledgement is given. If you want to reproduce the whole article in a third-party publication (excluding your thesis/dissertation for which permission is not required) please go to the Copyright Clearance Center request page.

Read more about how to correctly acknowledge RSC content.

Social activity

Spotlight

Advertisements