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电子给体-受体配合物BH3NH3中的电荷转移。

Charge transfer in the electron donor-acceptor complex BH3NH3.

作者信息

Mo Yirong, Song Lingchun, Wu Wei, Zhang Qianer

机构信息

Department of Chemistry, Western Michigan University, Kalamazoo, Michigan 49008, USA.

出版信息

J Am Chem Soc. 2004 Mar 31;126(12):3974-82. doi: 10.1021/ja039778l.

Abstract

As a simple yet strongly binding electron donor-acceptor (EDA) complex, BH(3)NH(3) serves as a good example to study the electron pair donor-acceptor complexes. We employed both the ab initio valence bond (VB) and block-localized wave function (BLW) methods to explore the electron transfer from NH(3) to BH(3). Conventionally, EDA complexes have been described by two diabatic states: one neutral state and one ionic charge-transferred state. Ab initio VB self-consistent field (VBSCF) computations generate the energy profiles of the two diabatic states together with the adiabatic (ground) state. Our calculations evidently demonstrated that the electron transfer between NH(3) and BH(3) falls in the abnormal regime where the reorganization energy is less than the exoergicity of the reaction. The nature of the NH(3)-BH(3) interaction is probed by an energy decomposition scheme based on the BLW method. We found that the variation of the charge-transfer energy with the donor-acceptor distance is insensitive to the computation levels and basis sets, but the estimation of the amount of electron transferred heavily depends on the population analysis procedures. The recent resurgence of interest in the nature of the rotation barrier in ethane prompted us to analyze the conformational change of BH(3)NH(3), which is an isoelectronic system with ethane. We found that the preference of the staggered structure over the eclipsed structure of BH(3)NH(3) is dominated by the Pauli exchange repulsion.

摘要

作为一种简单但具有强结合力的电子供体 - 受体(EDA)配合物,BH₃NH₃是研究电子对供体 - 受体配合物的一个很好的例子。我们采用了从头算价键(VB)方法和块定域波函数(BLW)方法来探究从NH₃到BH₃的电子转移。传统上,EDA配合物由两个非绝热态描述:一个中性态和一个离子电荷转移态。从头算VB自洽场(VBSCF)计算生成了这两个非绝热态以及绝热(基)态的能量曲线。我们的计算清楚地表明,NH₃和BH₃之间的电子转移处于异常区域,其中重组能小于反应的放能。基于BLW方法的能量分解方案探究了NH₃ - BH₃相互作用的本质。我们发现,电荷转移能量随供体 - 受体距离的变化对计算水平和基组不敏感,但转移电子量的估计在很大程度上取决于布居分析程序。最近对乙烷中旋转势垒本质的兴趣再度兴起,促使我们分析BH₃NH₃的构象变化,它是乙烷的等电子体系。我们发现,BH₃NH₃的交错结构比重叠结构更受青睐,这主要由泡利交换排斥主导。

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