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用于获得平面四配位碳配合物的有前景分子的理论研究。

Theoretical Investigation of Promising Molecules for Obtaining Complexes with Planar Tetracoordinate Carbon.

作者信息

Zhang Congjie, Ma Dongxia, Yang Shaoni, Liang Jinxia

机构信息

Key Laboratory of Macromolecular Science of Shaanxi Province, School of Chemistry & Chemical Engineering, Shaanxi Normal University, Changan South Road 199, Xi'an 710062, P. R. China.

Guizhou Provincial Key Laboratory of Computational Nano-Material Science, Guizhou Education University, 115 Gaoxin Road, Wudang District, Guiyang 550018, P. R. China.

出版信息

ACS Omega. 2016 Oct 19;1(4):620-625. doi: 10.1021/acsomega.6b00170. eCollection 2016 Oct 31.

Abstract

We have theoretically investigated the stability, chemical bonding, and coordination ability of the 2-Me-2-borabicyclo[1.1.0]but-1(3)-ene (2-Me-2BB) molecule using density functional theory and ab initio molecular dynamics (AIMD) simulations. Calculated results indicated that 2-Me-2BB is both thermodynamically and kinetically stable. The C=C bonds in 2-Me-2BB contain a π bond and a charge shift (CS) bond, different from those in 1-Me-borirene and cyclopropylene. Moreover, 2-Me-2BB can be a σ donor, leading to the formation of TM(2-Me-2BB)L complexes containing planar tetracoordinate carbon (ptC) with transition metals (TM = Sc-Cu), in which the lone electron pair of 2-Me-2BB results from its ionic resonance form. The lengths and Wiberg bond indices of the TM-ptC bond in TM(2-Me-2BB)L (TM = Sc-Cu) reveal that 2-Me-2BB can be a ligand similar to N-heterocyclic carbene. Therefore, 2-Me-2BB and its derivatives are promising molecules to obtain complexes with ptC. The natural charges on TM atoms in TM(2-Me-2BB)L (TM = Sc-Cu) complexes range from -0.97 to 1.54e, indicating that such complexes with ptC might have potential applications in catalytic chemistry.

摘要

我们使用密度泛函理论和从头算分子动力学(AIMD)模拟,从理论上研究了2-甲基-2-硼双环[1.1.0]丁-1(3)-烯(2-Me-2BB)分子的稳定性、化学键和配位能力。计算结果表明,2-Me-2BB在热力学和动力学上都是稳定的。2-Me-2BB中的C=C键包含一个π键和一个电荷转移(CS)键,这与1-甲基-硼杂环戊二烯和环丙烯中的C=C键不同。此外,2-Me-2BB可以作为一个σ供体,导致与过渡金属(TM = Sc-Cu)形成含有平面四配位碳(ptC)的TM(2-Me-2BB)L配合物,其中2-Me-2BB的孤电子对源于其离子共振形式。TM(2-Me-2BB)L(TM = Sc-Cu)中TM-ptC键的长度和维伯格键指数表明,2-Me-2BB可以作为一种类似于N-杂环卡宾的配体。因此,2-Me-2BB及其衍生物是获得含ptC配合物的有前途的分子。TM(2-Me-2BB)L(TM = Sc-Cu)配合物中TM原子上的自然电荷范围为-0.97至1.54e,表明这种含ptC的配合物在催化化学中可能具有潜在应用。

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