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The electronic structure of the F2,Cl2,Br2 molecules:the description of charge-shift bonding within the generalized valence bond ansatz

机译:F2,Cl2,Br2分子的电子结构:广义价键ansatz中电荷转移键的描述

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In this paper,we present an alternative picture for the electronic structure of dihalogen molecules and for the physical origin of the"charge-shift bonding"effect.Absolute energies,binding energies,quadrupole moments and harmonic frequencies are determined for a hierarchy of methods from Hartree-Fock(HF),many forms of generalized valence bond(GVB)wavefunctions to Multi-Reference-MP2.All valence electron pairs are explicitly correlated in the GVB wavefunctions.It is shown that HF charge densities for the fluorine molecule are extremely inaccurate.This fact causes the HF canonical orbital basis for this molecule to be inadequate in low order correlation treatments in spite of the fact that there are no"near degeneracies"at the equilibrium distance.The accurate description charge fluctuation lone pair repulsions are essential for a proper assessment of the fluorine molecule binding energy,bond distance and harmonic frequency.These properties are well described by lifting the perfect-pairing restriction in a full-valence orbital optimized GVB-RCI(restricted-configuration-interaction)wavefunction.The accurate calculation of electron-electron cusps is of lesser importance in the description of the electronic structure of the fluorine molecule than usually considered.An analysis of the lone pair GVB natural orbitals provides a clear-cut understanding on the differences between fluorine and the other dihalogen molecules.Within our model,we conclude that among the dihalogen molecules the charge-shift bonding concept is meaningful only for the fluorine molecule.
机译:在本文中,我们为二卤素分子的电子结构和“电荷转移键”效应的物理来源提供了另一种图片。确定了绝对能量,束缚能,四极矩和谐波频率,从Hartree-Fock(HF),是多种形式的Multi-Reference-MP2的广义价键(GVB)波函数,所有价电子对均与GVB波函数显着相关,这表明氟分子的HF电荷密度非常不准确尽管在平衡距离处没有“近简并”的事实,但这一事实导致该分子的HF规范轨道基础在低阶相关处理中不足。正确评估氟分子的结合能,键距和谐波频率。在全价轨道优化的GVB-RCI(受限构型相互作用)波函数中具有ng约束。电子电子尖端的准确计算在描述氟分子的电子结构中比通常考虑的要紧。对GVB孤对的自然轨道的研究提供了对氟与其他二卤素分子之间差异的清晰理解。在我们的模型中,我们得出的结论是,在二卤素分子中,电荷转移键概念仅对氟分子有意义。

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