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通过飞秒旋转相干光谱和从头算计算精确测定环辛四烯的结构。

Accurate determination of the structure of cyclooctatetraene by femtosecond rotational coherence spectroscopy and ab initio calculations.

作者信息

Kummli Dominique S, Lobsiger Simon, Frey Hans-Martin, Leutwyler Samuel, Stanton John F

机构信息

Departement für Chemie and Biochemie, Universität Bern, Freiestrasse 3, CH-3000 Bern 9, Switzerland.

出版信息

J Phys Chem A. 2008 Sep 25;112(38):9134-43. doi: 10.1021/jp803523y. Epub 2008 Aug 28.

DOI:10.1021/jp803523y
PMID:18754607
Abstract

We combine femtosecond time-resolved rotational coherence spectroscopy with high-level ab initio theory to obtain accurate structural information for the nonpolar antiaromatic molecule 1,3,5,7-cyclooctatetraene (C8H8, COT) and its perdeuterated isotopomer COT-d8 (C8D8). We measure the rotational B0 and centrifugal distortion constants D(J), D(JK) of the v = 0 states of COT and COT-d8 to high accuracy, e.g. B0 (COT) = 2710.329(56) MHz, as well as B(v) for the v = 1 states nu6, nu11, nu17, nu22, and nu41/nu42 of COT. The experimental rotational constants are compared to those obtained from calculations at the coupled-cluster with single, double, and perturbative triples [CCSD(T)] level. The latter also take into account vibrational averaging effects of the ground and vibrationally excited states. Combining the experimental and calculated rotational constants with the calculated equilibrium bond lengths and angles allows us to determine accurate equilibrium structure parameters, e.g., r(e) (C-C) = 147.0 +/- 0.05 pm, r(e) (C=C) = 133.7 +/- 0.1 pm, and r(e) (C-H) = 107.9 +/- 0.1 pm. The equilibrium C-C and C=C bond lengths of COT are compared to those of 1,3-butadiene. The expected effect of decreased pi-electron delocalization due to the twisting of adjacent C=C double bonds in COT relative to butadiene is observed for the C-C bonds but not for the C=C bonds.

摘要

我们将飞秒时间分辨转动相干光谱与高水平的从头算理论相结合,以获取非极性反芳香分子1,3,5,7-环辛四烯(C8H8,COT)及其全氘代同位素异构体COT-d8(C8D8)的精确结构信息。我们高精度地测量了COT和COT-d8的v = 0态的转动B0和离心畸变常数D(J)、D(JK),例如B0(COT)= 2710.329(56) MHz,以及COT的v = 1态ν6、ν11、ν17、ν22和ν41/ν42的B(v)。将实验转动常数与在单、双和微扰三重耦合簇[CCSD(T)]水平计算得到的常数进行比较。后者还考虑了基态和振动激发态的振动平均效应。将实验和计算得到的转动常数与计算得到的平衡键长和键角相结合,使我们能够确定精确的平衡结构参数,例如,r(e)(C-C)= 147.0±0.05 pm,r(e)(C=C)= 133.7±0.1 pm,以及r(e)(C-H)= 107.9±0.1 pm。将COT的平衡C-C和C=C键长与1,3-丁二烯的进行比较。观察到,相对于丁二烯,COT中相邻C=C双键扭曲导致的π电子离域减少对C-C键有预期的影响,但对C=C键没有影响。

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