首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Probing the Electronic Environment of Methylindoles using Internal Rotation and N-14 Nuclear Quadrupole Coupling
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Probing the Electronic Environment of Methylindoles using Internal Rotation and N-14 Nuclear Quadrupole Coupling

机译:使用内部旋转和N-14核四极联轴器探测甲基吲哚的电子环境

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摘要

High-resolution rotational spectra were recorded in the 10.5-21.0 GHz frequency range for seven singly methylated indoles. N-14 nuclear quadrupole hyperfine structure and spectral splittings arising from tunneling along the internal rotation of the methyl group were resolved for all indole species. The nuclear quadrupole coupling constants were used to characterize the electronic environment of the nitrogen atom, and the program XIAM was used to fit the barrier to internal rotation to the measured transition frequencies. The best fit barriers were found to be 277.1(2), 374.32(4), 414.(5), 331.6(2), 126.8675(15), 121.413(4), and 426(3) cm(-1) for 1-methylindole through 7-methylindole, respectively. The fitted barriers were found to be in good agreement with barriers calculated at the omega B97XD/6-311++G(d,p) level. The complete set of experimental barriers is compared to theoretical investigations of the origins of methyl torsional barriers and confirms that the magnitude of these barriers is an overall effect of individual hyperconjugative structural interactions of many bonding/antibonding orbitals.
机译:在10.5-21.0 GHz频率范围内记录了七个甲基化吲哚的高分辨率旋转光谱。解决了所有吲哚物种的N-14核四极超精细结构和沿甲基的内旋隧穿引起的光谱分裂。核四极偶合常数用于表征氮原子的电子环境,程序XIAM用于将内部旋转的势垒拟合到所测得的跃迁频率。发现最适合的障碍为277.1(2),374.32(4),414。(5),331.6(2),126.8675(15),121.413(4)和426(3)cm(-1) 1-甲基吲哚至7-甲基吲哚。发现已安装的障碍与在omega B97XD / 6-311 ++ G(d,p)水平计算的障碍非常吻合。完整的实验屏障与甲基扭转屏障起源的理论研究进行了比较,并证实了这些屏障的大小是许多键合/反键合轨道的个别超共轭结构相互作用的整体影响。

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