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存在甲基内旋转时的平衡结构:2-乙酰基呋喃两种构象体的微波光谱与量子化学研究

Equilibrium Structure in the Presence of Methyl Internal Rotation: Microwave Spectroscopy and Quantum Chemistry Study of the Two Conformers of 2-Acetylfuran.

作者信息

Dindić Christina, Lüchow Arne, Vogt Natalja, Demaison Jean, Nguyen Ha Vinh Lam

机构信息

Institute of Physical Chemistry, RWTH Aachen University, Landoltweg 2, 52074 Aachen, Germany.

Section of Chemical Information Systems, University of Ulm, Albert-Einstein-Allee 47, 89069 Ulm, Germany.

出版信息

J Phys Chem A. 2021 Jun 17;125(23):4986-4997. doi: 10.1021/acs.jpca.1c01733. Epub 2021 Jun 3.

Abstract

For 2-acetylfuran, quantum chemistry predicted and proton magnetic resonance study reported two conformers, anti and syn, differing in the position of the carbonyl group with respect to the O1-C2 bond of the furan ring. The microwave spectrum of the title molecule was recorded in the frequency range from 2 to 26.5 GHz using a molecular jet Fourier transform microwave spectrometer, confirming the presence of both conformers. Spectroscopic parameters such as the rotational and centrifugal distortion constants could be determined with high precision. The spectra of all C- and O-isotopologues of the energetically more favorable anti-conformer could be assigned, allowing the experimental determination of bond lengths and bond angles from the heavy atom substitution and the semi-experimental equilibrium structures. Splittings arising from the internal rotation of the acetyl methyl group could be resolved for both conformers as well as for all assigned isotopologues, from which the barrier to methyl internal rotation was determined. The torsional barrier is largely invariant at around 319 cm in the parent species of -2-acetylfuran and its isotopologues, showing that though isotopic substitution greatly influences the rotational properties of the molecule and causes a different microwave spectrum, its effect on the methyl torsion is negligible. On the other hand, conformational effects play a decisive role, as the torsional barrier of 239.780(13) cm found for -2-acetylfuran differs significantly from the value for -2-acetylfuran. The results are compared and discussed with other methyl-substituted furan derivatives and acetyl group containing ketones for a better understanding of different effects influencing molecular geometry parameters and methyl internal rotations.

摘要

对于2-乙酰基呋喃,量子化学预测以及质子磁共振研究报告了两种构象异构体,反式和顺式,它们在羰基相对于呋喃环的O1-C2键的位置上有所不同。使用分子束傅里叶变换微波光谱仪在2至26.5 GHz的频率范围内记录了标题分子的微波光谱,证实了两种构象异构体的存在。诸如转动常数和离心畸变常数等光谱参数可以高精度测定。可以指定能量上更有利的反式构象异构体的所有C和O同位素异构体的光谱,从而通过重原子取代和半实验平衡结构实验确定键长和键角。对于两种构象异构体以及所有指定的同位素异构体,都可以分辨出由乙酰基甲基的内旋转引起的分裂,由此确定甲基内旋转的势垒。在-2-乙酰基呋喃及其同位素异构体的母体物种中,扭转势垒在319 cm左右基本不变,这表明尽管同位素取代极大地影响了分子的旋转性质并导致不同的微波光谱,但其对甲基扭转的影响可以忽略不计。另一方面,构象效应起决定性作用,因为-2-乙酰基呋喃的扭转势垒为239.780(13) cm,与-2-乙酰基呋喃的值有显著差异。将结果与其他甲基取代的呋喃衍生物和含乙酰基的酮进行比较和讨论,以更好地理解影响分子几何参数和甲基内旋转的不同效应。

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