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首页> 外文期刊>International Journal of Quantum Chemistry >Ab initio calculations of the geometry and polarizabilities of bisphenyls having aliphatic substituents
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Ab initio calculations of the geometry and polarizabilities of bisphenyls having aliphatic substituents

机译:从头开始计算具有脂族取代基的联苯的几何形状和极化率

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摘要

Ab initio geometry optimization and polarizability calculations of a series of bisphenyls, which are the model compounds of chemically different polycarbonates using HF/6-31G and 6-31G** basis sets are presented. Calculated absolute value of the conformationally averaged optical anisotropy (〈γ2〉) of diphenyl propane, a model analog of bisphenol A polycarbonate, is higher than the corresponding experimental value in the dilute solution phase. The calculations have reproduced the relative trend in the optical anisotropy for the different bisphenyl model compounds in a manner similar to those using semiclassical approach, by incorporation of the condensed phase polarizabilities and quantum chemically calculated geometry structure into the valence optical scheme. Individual contributions to the gas phase polarizability and optical anisotropy of the model compounds for various dihedral conformers, because of the presence of different aliphatic chemical groups, are correctly predicted by the calculations here.
机译:介绍了一系列双联苯的从头开始的几何优化和极化度计算,这是使用HF / 6-31G和6-31G **基集的化学不同聚碳酸酯的模型化合物。双酚A聚碳酸酯的模型类似物二苯丙烷的构象平均光学各向异性(&γ2&)的计算绝对值高于稀溶液相中的相应实验值。通过将缩合相极化率和量子化学计算的几何结构合并到价光学方案中,计算以与使用半经典方法相似的方式再现了不同联苯模型化合物的光学各向异性的相对趋势。由于存在不同的脂肪族化学基团,因此通过此处的计算可以正确预测各种二面体构象对模型化合物的气相极化率和光学各向异性的贡献。

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