首页> 外文期刊>The Journal of Chemical Physics >ON THE EFFECTIVENESS OF MONOMER-, DIMER-, AND BOND-CENTERED BASIS FUNCTIONS IN CALCULATIONS OF INTERMOLECULAR INTERACTION ENERGIES
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ON THE EFFECTIVENESS OF MONOMER-, DIMER-, AND BOND-CENTERED BASIS FUNCTIONS IN CALCULATIONS OF INTERMOLECULAR INTERACTION ENERGIES

机译:分子间相互作用能计算中以单体,二聚体和键为中心的基函数的有效性

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A range of basis sets differing in the location of basis functions has been explored from the point of view of the effectiveness of calculating the electrostatic, induction, dispersion, and exchange components of intermolecular interaction energies. Possible location strategies range from monomer-centered basis sets, through the dimer-centered ones, to sets with functions centered at the intermolecular bond. It is shown that the most effective approach is to use the so-called ''monomer plus'' basis sets containing, in addition to monomer-centered functions and bond functions, a small number of functions centered on the interacting partner. Using such basis sets for He-2 and (H2O)(2) the best values to date have been obtained for several interaction energy components. The conclusions from this work are relevant also for supermolecular calculations of interaction energies. (C) 1995 American Institute of Physics. [References: 84]
机译:从计算分子间相互作用能的静电,感应,色散和交换分量的有效性的角度出发,探索了一系列基函数位置不同的基集。可能的定位策略范围从以单体为中心的基集到以二聚体为中心的基集,再到以分子间键为中心的功能集。结果表明,最有效的方法是使用所谓的“单体加”基集,该基集除以单体为中心的功能和键功能外,还包含少量以相互作用伙伴为中心的功能。使用He-2和(H2O)(2)的此类基集,迄今为止已经获得了一些相互作用能分量的最佳值。这项工作的结论也与相互作用能的超分子计算有关。 (C)1995年美国物理研究所。 [参考:84]

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