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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Weak Interactions between Trivalent Pnictogen Centers: Computational Analysis of Bonding in Dimers X3E center dot center dot center dot EX3 (E = Pnictogen, X = Halogen)
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Weak Interactions between Trivalent Pnictogen Centers: Computational Analysis of Bonding in Dimers X3E center dot center dot center dot EX3 (E = Pnictogen, X = Halogen)

机译:三价光气中心之间的弱相互作用:二聚体X3E键的计算分析X3E中心点中心点中心点EX3(E =光子原,X =卤素)

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The nature of weak interactions in dimers X3E center dot center dot center dot EX3 (E = N-Bi, X = F-I) was investigated by wave function and density functional theory (DFT)-based methods. Out of the 20 systems studied, 10 are found to be bound at the CP-MP2 and LMP2 levels of theory. Detailed partition of the interaction energy into different components revealed that dispersion is the primary force holding the dimers together but there also exists an important ionic component whose contribution increases with increasing halogen size. As expected, standard density functionals fail to describe bonding in the studied systems. However, the performance of DFT methods can be easily improved via empirical dispersion correction though full agreement with high level ab initio results was not obtained. Total binding energies calculated at the SCS-MP2 and LCCSD(T) levels of theory yield an energy scale of 10-15 W mol(-1) which is comparable to a weak hydrogen bond and demonstrates that E center dot center dot center dot E interactions, and P center dot center dot center dot P interactions in particular, can be considered relevant for determining supramolecular structure in the solid state. In addition to high-level energy estimates, results from detailed bonding analysis showed that group 13 dimetallenes are structural analogues of the studied dimers, and as such contain a slipped,pi-interaction which is antibonding in nature.
机译:通过基于波函数和密度泛函理论(DFT)的方法研究了二聚体X3E中心点中心点中心点EX3(E = N-Bi,X = F-I)中弱相互作用的性质。在研究的20个系统中,有10个在理论的CP-MP2和LMP2级别上受约束。相互作用能在不同组分中的详细分配表明,分散是将二聚体保持在一起的主要作用力,但也存在重要的离子组分,其贡献随着卤素尺寸的增加而增加。不出所料,标准密度函数无法描述所研究系统中的键合。然而,尽管没有获得与高水平的从头算结果完全一致的结果,但通过经验色散校正可以轻松地提高DFT方法的性能。在理论上的SC​​S-MP2和LCCSD(T)水平下计算的总结合能产生的能量规模为10-15 W mol(-1),与弱氢键相当,表明E中心点中心点中心点E相互作用,特别是P中心点中心点中心点P的相互作用,可以认为与确定固态的超分子结构有关。除了高水平的能量估算之外,详细的键合分析结果还表明,第13组双金属化合物是所研究的二聚体的结构类似物,因此含有滑动,π相互作用,本质上是抗键合的。

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