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首页> 外文期刊>The Journal of Chemical Physics >High-resolution infrared spectroscopy and ab initio studies of the cyclopropane-carbon dioxide interaction
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High-resolution infrared spectroscopy and ab initio studies of the cyclopropane-carbon dioxide interaction

机译:高分辨率红外光谱和从头开始研究环丙烷与二氧化碳的相互作用

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A jet-cooled high-resolution infrared spectrum of the cyclopropane-carbon dioxide complex was detected for the first time, using a rapid scan infrared spectrometer with an astigmatic multipass sample cell. The spectrum was recorded in the vicinity of the CO2 asymmetric stretching band (nu(3)) and exhibits a b-dipole selection rule. Altogether, over 200 lines were observed, assigned, and fitted to Watson's S-reduction Hamiltonian. Rotational and quartic distortion constants were obtained. The band origin was located at 2347.6263(2) cm(-1), redshifted by 1.5230(2) cm(-1) from the corresponding frequency of the CO2 monomer. The experimentally determined structure shows that CO2 lies next to a C-C bond edge and is perpendicular to the C-3 ring, indicating that the interaction is characterized by the bonding between the carbon atom of CO2 and the pseudo-pi system of cyclopropane. The intermolecular distance between the carbon atom of CO2 and the center of mass of cyclopropane was determined to be 3.667(2) A. Complete ab initio geometry optimizations and harmonic frequency calculations were carried out at the level of second-order Moller-Plesset perturbation theory with four different basis sets: cc-pVDZ, 6-311++G(d,p), aug-cc-pVDZ, and aug-cc-pVTZ. The lowest-energy structure identified with the three larger basis sets is in accord with the experimental finding. In addition, a transition state was identified and the tunneling barrier height was computed. (c) 2006 American Institute of Physics.
机译:使用带有散光多通样品池的快速扫描红外光谱仪,首次检测到了环丙烷-二氧化碳配合物的喷射冷却高分辨率红外光谱。光谱记录在CO2不对称拉伸带(nu(3))附近,并显示出b偶极子选择规则。总共观察,分配和拟合了200多个行,以拟合Watson的S约简哈密顿量。获得了旋转和四次畸变常数。谱带起点位于2347.6263(2)cm(-1),从CO2单体的相应频率红移了1.5230(2)cm(-1)。实验确定的结构表明,CO2紧邻C-C键边缘,并且垂直于C-3环,表明相互作用的特征是CO2的碳原子与环丙烷的拟pi系统之间的键合。确定CO2的碳原子与环丙烷的质心之间的分子间距离为3.667(2)A。在二阶Moller-Plesset微扰理论的水平上进行了完整的从头开始的几何优化和谐波频率计算具有四个不同的基本集:cc-pVDZ,6-311 ++ G(d,p),aug-cc-pVDZ和aug-cc-pVTZ。用三个较大的基集确定的最低能量结构与实验结果一致。另外,确定过渡状态并计算隧道势垒高度。 (c)2006年美国物理研究所。

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