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A QUANTUM CHEMISTRY STUDY OF BENZENE DIMER

机译:苯二聚体的量子化学研究

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We have performed a detailed quantum chemistry study of the gas-phase benzene dimer. Large atomic orbital basis sets with multiple polarization functions were used. The effects of basis set size, electron correlation, and basis set superposition error were investigated for the low-energy planar sandwich (D-6h and C-6v), parallel displaced (C-2h), and T-shaped (C-2v) dimer structures. Our studies indicate that the C-2h-symmetry parallel displaced geometry is the lowest-energy structure for the benzene dimer. The T-shaped structure was found to be a low-energy saddle point for interconversion between parallel displaced structures, while the planar sandwich structure was found to be a saddle point on a higher-energy interconversion path between parallel displaced structures. Detailed analysis of the low-energy (T-shaped saddle point) path revealed the presence of a shallow minimum corresponding to a tilt angle between phenyl ring planes of about 45 degrees. Much of the behavior of the benzene dimer observed through molecular jet spectroscopy can be explained by considering a population of the low-energy parallel displaced structure and structures along the low-energy interconversion path, including the tilt- and T-shaped structures. (C) 1996 American Institute of Physics. [References: 23]
机译:我们已经对气相苯二聚体进行了详细的量子化学研究。使用具有多个极化函数的大型原子轨道基础集。研究了低能平面夹层结构(D-6h和C-6v),平行位移(C-2h)和T形(C-2v)的基集尺寸,电子相关性和基集叠加误差的影响)二聚体结构。我们的研究表明,C-2h对称的平行位移几何结构是苯二聚体的最低能级结构。发现T形结构是平行位移结构之间相互转换的低能量鞍点,而平面夹心结构则是平行位移结构之间较高能量互变路径的鞍点。对低能(T形鞍点)路径的详细分析表明,存在一个浅最小值,该最小值对应于约45度的苯环平面之间的倾斜角。通过分子喷射光谱学观察到的苯二聚体的大部分行为可以通过考虑低能平行位移的结构以及沿着低能互变路径的结构(包括倾斜和T形结构)的数量来解释。 (C)1996年美国物理研究所。 [参考:23]

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