Bruhn T, Mäder H
Institut für Physikalische Chemie, Universität Kiel, Olshausenstr. 40, Kiel, 24098, Germany
J Mol Spectrosc. 2000 Apr;200(2):151-161. doi: 10.1006/jmsp.1999.8043.
The microwave spectrum of m-tolunitrile (3-methylbenzonitrile, m-C(6)H(4)CH(3)CN) has been investigated in the frequency range from 1 to 4 and 8 to 26.5 GHz. The spectra in the two lowest states of internal methyl rotation (m = 0, +/-1) were recorded by means of pulsed molecular beam Fourier transform microwave (MB-FTMW) spectrometers. The interpretation of the spectra was based on an asymmetric frame-symmetric top Hamiltonian with inclusion of centrifugal distortion terms and first-order contributions from (14)N nuclear quadrupole coupling. A least-squares analysis yielded the rotational constants A = 3295.9103(10) MHz, B = 1199.1188(2) MHz, C = 883.9223(1) MHz, all elements of the nuclear quadrupole coupling tensor chi(aa) = -3.626(1) MHz, chi(bb) = 1.684(1) MHz, chi(cc) = 1.943(1) MHz, and chi(ab) = -1.870(3) MHz, as well as the threefold barrier to internal rotation, V(3) = 14.2 cm(-1), and the angle between the internal rotor axis and the principal moment of inertia a axis, θ = 42.66 degrees, using fixed values for the sixfold barrier term V(6) (-11 cm(-1)) and the moment of inertia of the methyl top I(alpha) (3.16 u Å(2)). Copyright 2000 Academic Press.
间甲苯腈(3 - 甲基苯甲腈,m - C(6)H(4)CH(3)CN)的微波光谱已在1至4 GHz以及8至26.5 GHz频率范围内进行了研究。通过脉冲分子束傅里叶变换微波(MB - FTMW)光谱仪记录了内部甲基旋转两个最低态(m = 0,±1)的光谱。光谱的解释基于一个非对称框架 - 对称陀螺哈密顿量,其中包含离心畸变项以及(14)N核四极耦合的一阶贡献。最小二乘法分析得出转动常数A = 3295.9103(10) MHz,B = 1199.1188(2) MHz,C = 883.9223(1) MHz,核四极耦合张量的所有元素chi(aa) = -3.626(1) MHz,chi(bb) = 1.684(1) MHz,chi(cc) = 1.943(1) MHz,以及chi(ab) = -1.870(3) MHz,还有内部旋转的三重势垒V(3) = 14.2 cm(-1),以及内部转子轴与主惯性矩a轴之间的夹角θ = 42.66度,其中六重势垒项V(6)(-11 cm(-1))和甲基陀螺的惯性矩I(α)(3.16 u Å(2))采用固定值。版权所有2000年,学术出版社。