Barrier to Methyl Internal Rotation and Equilibrium Structure of 2-Methylthiophene Determined by Microwave Spectroscopy

Kenneth J. Koziol, Hamza El Hadki, Arne Lüchow, Natalja Vogt, Jean Demaison, Ha Vinh Lam Nguyen
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引用次数: 1

Abstract

The microwave spectrum of 2-methylthiophene was recorded in a frequency range from 2 to 26.5 GHz using a molecular-jet Fourier transform microwave spectrometer with a Fabry–Pérot type resonator chamber and coaxial arrangement of the resonator and the molecular beam. Measuring and assigning spectra of the 34S and 13C isotopologues allowed the determination of the semiexperimental equilibrium structure (reSE). Comparing the structure to that of thiophene revealed a decrease in the ∠(S−C2−C3) angle from 111.595(6)° to 111.37(1)° by addition of the methyl group to the C(2) position, as well as an increase in the S−C2 bond length from 1.7102(1) Å to 1.7219(2) Å. A–E splittings from internal rotation of the methyl group were observed, and the V3 potential in the vibrational ground state was determined to be 197.7324(18) cm−1. The V3 value and the rotational constants A, B, C were calculated with a large number of different methods and basis sets for benchmarking purposes by comparing them to the fitted parameters. The V3 value was also compared to those of other thiophene and furan derivatives to gain a better understanding of the steric and electrostatic effects in these classes of compounds.
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微波光谱法测定2-甲基噻吩的甲基内旋势和平衡结构
采用分子喷射傅立叶变换微波光谱仪,采用fabry - p型谐振腔,谐振腔与分子束同轴排列,在2 ~ 26.5 GHz频率范围内记录了2-甲基噻吩的微波光谱。通过对34S和13C同位素的测量和分配,可以确定半实验平衡结构(reSE)。与噻吩的结构比较发现,由于在C(2)位置上加入甲基,其∠(S−C2−C3)角从111.595(6)°减小到111.37(1)°,S−C2键长从1.7102(1)Å增加到1.7219(2)Å。观察了甲基内旋引起的A-E分裂,确定了振动基态的V3势为197.7324(18)cm−1。通过与拟合参数的比较,采用大量不同的方法和基集计算V3值和旋转常数A、B、C,以达到基准测试的目的。V3值也与其他噻吩和呋喃衍生物的V3值进行了比较,以更好地了解这类化合物的空间和静电效应。
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