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重新审视键能分析并设计一种严格的方法。

Bond energy analysis revisited and designed toward a rigorous methodology.

机构信息

Department of Chemistry and Biochemistry, School of Advanced Science and Engineering, Waseda University, Tokyo 169-8555, Japan.

出版信息

J Chem Phys. 2011 Sep 28;135(12):124105. doi: 10.1063/1.3636387.

Abstract

The present study theoretically revisits and numerically assesses two-body energy decomposition schemes including a newly proposed one. The new decomposition scheme is designed to make the equilibrium bond distance equivalent with the minimum point of bond energies. Although the other decomposition schemes generally predict the wrong order of the C-C bond strengths of C(2)H(2), C(2)H(4), and C(2)H(6), the new decomposition scheme is capable of reproducing the C-C bond strengths. Numerical assessment on a training set of molecules demonstrates that the present scheme exhibits a stronger correlation with bond dissociation energies than the other decomposition schemes do, which suggests that the new decomposition scheme is a reliable and powerful analysis methodology.

摘要

本研究从理论上重新考察并数值评估了两种包括新提出的一种的双体能量分解方案。新的分解方案旨在使平衡键距与键能的最低点等效。尽管其他分解方案通常预测 C(2)H(2)、C(2)H(4)和 C(2)H(6)的 C-C 键强度的错误顺序,但新的分解方案能够再现 C-C 键强度。对分子训练集的数值评估表明,与其他分解方案相比,本方案与键离解能的相关性更强,这表明新的分解方案是一种可靠且强大的分析方法。

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