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主族金属-硼嗪夹心配合物的理论研究

Theoretical study of main-group metal-borazine sandwich complexes.

作者信息

Kang Hong Seok

机构信息

College of Natural Science, Jeonju University, Hyoja-dong, Wansan-ku, Chonju, Chonbuk 560-759, Republic of Korea.

出版信息

J Phys Chem A. 2005 Feb 24;109(7):1458-67. doi: 10.1021/jp046279d.

Abstract

Using density functional theory within the generalized gradient approximation, we have theoretically studied the formation of neutral metal-aromatic complexes R1-M and R1-M-R2, where M is either neutral lithium, calcium, or gallium and R1 or R2 is benzene or borazine. We first find that calcium atom is an effective mediator for cooperative formation of a sandwich complex with borazine, while others are not. When benzene and borazine are mixed in the presence of calcium, a 1:2:1 mixture of benzene-calcium-benzene, borazine-calcium-benzene, and borazine-calcium-borazine is expected. An "A"-shaped structure is predicted for homo- and heterocomplexes of borazine with partial B-B and B-C bonds, while two rings are planar in the case of homocomplexes of benzene. Our analysis of the electron density distributions in HOMO-1 to LUMO in terms of orbital symmetry in conjunction with analysis of l,m-projected electronic local density of states shows that this correlates with the charge transfer and the interaction of pi states of the rings mediated by empty d-states of Ca, which is ultimately related to the polarity of the B-N bond. We find that there is a large accumulation of electron density on particular atoms upon complex formation, predicting characteristic behavior in electron-transfer reaction and nucleophilic reaction different from those for pure benzene or borazine molecule. The hetero-sandwich complex is of particular interest due to its asymmetrical distribution of excess electrons.

摘要

我们采用广义梯度近似下的密度泛函理论,从理论上研究了中性金属 - 芳香族配合物R1 - M和R1 - M - R2的形成,其中M为中性锂、钙或镓,R1或R2为苯或硼嗪。我们首先发现钙原子是与硼嗪协同形成夹心配合物的有效媒介,而其他原子则不是。当苯和硼嗪在钙存在的情况下混合时,预计会形成苯 - 钙 - 苯、硼嗪 - 钙 - 苯和硼嗪 - 钙 - 硼嗪的1:2:1混合物。对于具有部分B - B和B - C键的硼嗪同配合物和异配合物,预测其结构为“A”形,而对于苯的同配合物,两个环是平面的。我们结合l,m投影电子局域态密度分析,根据轨道对称性对HOMO - 1到LUMO中的电子密度分布进行分析,结果表明这与电荷转移以及由Ca的空d态介导的环的π态相互作用相关,这最终与B - N键的极性有关。我们发现配合物形成时特定原子上有大量电子密度积累,这预示着其在电子转移反应和亲核反应中的特征行为与纯苯或硼嗪分子不同。由于其多余电子的不对称分布,异夹心配合物特别引人关注。

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