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首页> 外文期刊>The Journal of Chemical Physics >High-accuracy extrapolated ab initio thermochemistry. III. Additional improvements and overview
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High-accuracy extrapolated ab initio thermochemistry. III. Additional improvements and overview

机译:高精度外推从头算热化学。三,其他改进和概述

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Effects of increased basis-set size as well as a correlated treatment of the diagonal Born-Oppenheimer approximation are studied within the context of the high-accuracy extrapolated ab initio thermochemistry (HEAT) theoretical model chemistry. It is found that the addition of these ostensible improvements does little to increase the overall accuracy of HEAT for the determination of molecular atomization energies. Fortuitous cancellation of high-level effects is shown to give the overall HEAT strategy an accuracy that is, in fact, higher than most of its individual components. In addition, the issue of core-valence electron correlation separation is explored; it is found that approximate additive treatments of the two effects have limitations that are significant in the realm of < 1 kJ mol(-1) theoretical thermochemistry. (c) 2008 American Institute of Physics.
机译:在高精度外推从头算热化学(HEAT)理论模型化学的背景下,研究了增加基集大小的影响以及对角线Born-Oppenheimer近似的相关处理。已经发现,这些表面上的改进的增加几乎没有增加用于确定分子雾化能量的HEAT的整体精度。事实证明,高水平效果的偶然抵消使整个HEAT策略具有较高的准确性,实际上,其准确性高于其大多数单独组件。此外,还探讨了核价电子相关分离的问题。发现这两种作用的近似加成处理具有局限性,这些局限性在理论热化学<1 kJ mol(-1)的领域中很重要。 (c)2008年美国物理研究所。

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