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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >A Quantum Chemistry Study of the van der Waals Dimers of Benzene, Naphthalene, and Anthracene: Crossed (D_(2d)) and Parallel-Displaced (C_(2h)) Dimers of Very Similar Energies in the Linear Polyacenes
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A Quantum Chemistry Study of the van der Waals Dimers of Benzene, Naphthalene, and Anthracene: Crossed (D_(2d)) and Parallel-Displaced (C_(2h)) Dimers of Very Similar Energies in the Linear Polyacenes

机译:苯,萘和蒽的范德华二聚体的量子化学研究:线性聚乙炔中非常相似的能量的交叉(D_(2d))和平行位移(C_(2h))二聚体

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A quantum chemistry study of the ground-state structures and binding energies of the van der Waals dimers of benzene, naphthalene, and anthracene has been made at the MP2/6-31G and MP2/6-31+G levels of theory. For naphthalene and anthracene, the calculations yield two low energy dimers of very similar energies: D_(2d) (crossed) and C_(2h) (parallel-displaced). Conformers, analogous to the T-shaped dimer of benzene, are less stable than the crossed and the parallel-displaced dimers. BSSE-corrected MP2/6-31+G//MP2/6-31G binding energies of the crossed and parallel-displaced dimers are, respectively, 15.77 and 15.65 kJ/mol for naphthalene and 36.40 and 31.84 kJ/mol for anthracene. The fully optimized MP2/6-31G structures of the parallel-displaced dimer of naphthalene has a horizontal displacement of 1.5 A along the short axes of the monomers and a vertical displacement of 3.5 A. The corresponding horizontal and vertical separations for the parallel-displaced (PD) dimer of anthracene are 1.1 and 3.6 A, respectively. For the crossed dimers, the vertical separation of the aromatic rings is 3.6 A for naphthalene and 3.3 A for anthracene. The greater binding energy and the shorter horizontal displacement of the anthracene PD dimer relative to the naphthalene PD dimer are consistent with the stronger dispersion interactions expected of a larger dimer. The greater stability and smaller vertical separation of the crossed dimer of anthracene relative to that of naphthalene can also be attributed to the disparity in the dispersion interactions.
机译:在理论MP2 / 6-31G和MP2 / 6-31 + G的水平上,对苯,萘和蒽的范德华二聚体的基态结构和结合能进行了量子化学研究。对于萘和蒽,计算得出两个能量非常相似的低能二聚体:D_(2d)(交叉)和C_(2h)(平行位移)。类似于苯的T形二聚体,其二聚体的稳定性要低于交叉和平行位移的二聚体。交叉和平行置换的二聚体经BSSE校正的MP2 / 6-31 + G // MP2 / 6-31G的结合能,萘分别为15.77和15.65 kJ / mol,蒽为36.40和31.84 kJ / mol。萘的平行位移二聚体的完全优化的MP2 / 6-31G结构沿单体短轴的水平位移为1.5 A,垂直位移为3.5A。平行位移的相应水平和垂直间距蒽的(PD)二聚体分别为1.1和3.6A。对于交叉的二聚体,芳环的垂直间隔(萘)为3.6 A,蒽为3.3A。蒽PD二聚体相对于萘PD二聚体的更大的结合能和较短的水平位移与预期的较大二聚体的较强的分散相互作用相一致。蒽的交叉二聚体相对于萘的交叉二聚体的更大的稳定性和较小的垂直间距也可以归因于分散相互作用中的差异。

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