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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Valence-Bond/Coherent-States Approach to the Charge Equilibration Model I.Valence-Bond Models for Diatomic Molecules
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Valence-Bond/Coherent-States Approach to the Charge Equilibration Model I.Valence-Bond Models for Diatomic Molecules

机译:电荷平衡模型的价键/相干态方法I.双原子分子的价键模型

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摘要

A valence-bond (VB)/coherent-states (CS) approach to the charge equilibration (CE) model for diatomic molecules is presented in this work (VB part) and its sequel (CS part). By emphasizing theoretical aspects, this approach obtains the classical-electrostatics CE model from a quantum VB model in conjunction with the CS theory. For the VB part, a VB generalized CE (VB/GCE) model, which contains the CE model as a subcase, is derived from a two-electron, three-state VB model via the sequential application of seven approximations. Unlike its CE subcase, the VB/GCE model provides a satisfactory charge-transfer description at dissociation as illustrated with HF(g) and other molecules. Through the previous derivation, CE charges and CE Coulomb interactions are elucidated in terms of VB Mulliken charges and VB atomic interactions, respectively. Modifications in the above derivation can generate a family of related VB/GCE models that includes the aforesaid VB/GCE model. Despite their classical appearance, all of the VB/GCE and CE models involve VB wave functions corresponding to ground and first-excited states. Moreover, all of the VB/GCE and CE energy and charge optimizations are proven to be equivalent to the variational eigenvector equation procedures of the underlying VB models. The quantum-mechanics/classical-electrostatics connection implicit in this work is further elaborated by means of VB CS sets in the sequel. The VB/CS treatment of polyatomic molecules and additional tests of the present approach will be reported in later papers in this series.
机译:在这项工作(VB部分)及其续篇(CS部分)中,提出了一种价键(VB)/相干态(CS)方法用于双原子分子的电荷平衡(CE)模型。通过强调理论方面,此方法结合CS理论从量子VB模型获得经典静电学CE模型。对于VB部分,通过顺序应用七个近似值,从二电子,三态VB模型派生出一个VB广义CE(VB / GCE)模型,其中包含CE模型作为子案例。与它的CE子情况不同,VB / GCE模型在解离时提供了令人满意的电荷转移描述,如HF(g)和其他分子所示。通过先前的推导,分别根据VB穆里肯电荷和VB原子相互作用阐明了CE电荷和CE库仑相互作用。在上述推导中的修改可以产生包括上述VB / GCE模型的相关VB / GCE模型族。尽管它们具有经典外观,但所有的VB / GCE和CE模型都包含与基态和第一激发态相对应的VB波函数。而且,所有的VB / GCE和CE能量和电荷优化都被证明与基础VB模型的变分特征向量方程程序等效。后续工作中通过VB CS集合进一步阐述了这项工作中隐含的量子力学/经典静电学连接。多原子分子的VB / CS处理和本方法的其他测试将在本系列的后续论文中进行报道。

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