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A valence bond study of the dioxygen molecule

机译:双氧分子的价键研究

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The dioxygen molecule has been the subject of valence bond (VB) studies since 1930s, as it was considered as the first "failure" of VB theory. The object of this article is to provide an unambiguous VB interpretation for the nature of chemical bonding of the molecule by means of modern VB computational methods, VBSCF, BOVB, and VBCI. It is shown that though the VBSCF method can not provide quantitative accuracy for the strongly electronegative and electron-delocalized molecule because of the lack of dynamic correlation, it still gives a correct qualitative analysis for wave function of the molecule and provides intuitive insights into chemical bonding. An accurate quantitative description for the molecule requires higher levels of VB methods that incorporate dynamic correlation. The potential energy curves of the molecule are computed at the various VB levels. It is shown that there exists a small hump in the PECs of VBSCF for the ground state, as found in previous studies. However, higher levels of VB methods dissolve the hump. The BOVB and VBCI methods reproduce the dissociation energies and other physical properties of the ground state and the two lowest excited states in very good agreement with experiment and with sophisticated MO based methods, such as the MRCI method. (C) 2006 Wiley Periodicals, Inc.
机译:自从1930年代以来,双氧分子就一直是价键(VB)研究的主题,因为它被认为是VB理论的第一个“失败”。本文的目的是通过现代VB计算方法VBSCF,BOVB和VBCI提供对分子化学键合性质的明确VB解释。结果表明,尽管由于缺乏动态相关性,VBSCF方法无法提供强电负性和电子离域分子的定量准确性,但它仍然可以对分子的波函数进行正确的定性分析,并提供了对化学键合的直观见解。 。对分子的准确定量描述需要结合动态相关性的更高水平的VB方法。在各种VB水平下计算分子的势能曲线。如先前的研究发现,表明基态的VBSCF的PEC中存在一个小的驼峰。但是,更高级别的VB方法可以解决这个难题。 BOVB和VBCI方法可再现基态和两个最低激发态的解离能和其他物理性质,与实验和基于MRCI的复杂MO方法非常吻合。 (C)2006年Wiley Periodicals,Inc.

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