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通过 IQA、ETs-NOCV 和 LED 方法揭示卡宾⋯MX(M = Be、Mg、Zn;X = H、Br)二聚体中铍、镁和锌键的本质。

Nature of Beryllium, Magnesium, and Zinc Bonds in Carbene⋯MX (M = Be, Mg, Zn; X = H, Br) Dimers Revealed by the IQA, ETS-NOCV and LED Methods.

机构信息

Faculty of Chemistry, Jagiellonian University, Gronostajowa 2, 30-387 Cracow, Poland.

Faculty of Chemistry, Nicolaus Copernicus University in Toruń, Gagarina 7, 87-100 Toruń, Poland.

出版信息

Int J Mol Sci. 2022 Nov 24;23(23):14668. doi: 10.3390/ijms232314668.

Abstract

The nature of beryllium−, magnesium− and zinc−carbene bonds in the cyclopropenylidene⋯MX2 (M = Be, Mg, Zn; X = H, Br) and imidazol-2-ylidene⋯MBr2 dimers is investigated by the joint use of the topological QTAIM-based IQA decomposition scheme, the molecular orbital-based ETS-NOCV charge and energy decomposition method, and the LED energy decomposition approach based on the state-of-the-art DLPNO-CCSD(T) method. All these methods show that the C⋯M bond strengthens according to the following order: Zn < Mg << Be. Electrostatics is proved to be the dominant bond component, whereas the orbital component is far less important. It is shown that QTAIM/IQA underestimates electrostatic contribution for zinc bonds with respect to both ETS-NOCV and LED schemes. The σ carbene→MX2 donation appears to be much more important than the MX2→ carbene back-donation of π symmetry. The substitution of hydrogen atoms by bromine (X in MX2) strengthens the metal−carbene bond in all cases. The physical origin of rotational barriers has been unveiled by the ETS-NOCV approach.

摘要

利用拓扑 QTAIM 基 IQA 分解方案、基于分子轨道的 ETS-NOCV 电荷和能量分解方法以及基于最先进的 DLPNO-CCSD(T)方法的 LED 能量分解方法,研究了环丙烯亚基⋯MX2(M=Be、Mg、Zn;X=H、Br)和咪唑-2-亚基⋯MBr2 二聚体中铍-、镁-和锌-卡宾键的性质。所有这些方法都表明,C⋯M 键按照以下顺序增强:Zn<Mg<Be。静电作用被证明是主要的键成分,而轨道成分则远不那么重要。结果表明,对于锌键,QTAIM/IQA 低估了静电贡献,相对于 ETS-NOCV 和 LED 方案都是如此。σ 卡宾→MX2 的供体似乎比 MX2→π 对称的卡宾反向供体重要得多。在所有情况下,用溴原子(在 MX2 中为 X)取代氢原子都会增强金属-卡宾键。ETS-NOCV 方法揭示了旋转势垒的物理起源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c4a/9738500/b78db42438d4/ijms-23-14668-g001.jpg

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