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杂配二价第14族化合物LEL'(E = C - Sn;L = N - 杂环卡宾;L' = 环状烷基(氨基)卡宾)中卡宾配体的不同供体 - 受体相互作用

Different Donor-Acceptor Interactions of Carbene Ligands in Heteroleptic Divalent Group 14 Compounds, LEL' (E=C-Sn; L=N-Heterocyclic Carbene; L'=Cyclic Alkyl(Amino) Carbene).

作者信息

Purushothaman Indu, De Susmita, Parameswaran Pattiyil

机构信息

Department of Chemistry, National Institute of Technology Calicut, NIT Campus P.O., Kozhikode, 673 601, Kerala, India.

Department of Applied Chemistry, Cochin University of Science and Technology, Trikakkara, Cochin, 682022, Kerala, India.

出版信息

Chemistry. 2018 Mar 12;24(15):3816-3824. doi: 10.1002/chem.201705719. Epub 2018 Feb 16.

Abstract

The electronic structure and reactivity of heteroleptic divalent group 14 compounds, 1E (E=C-Sn) with NHC and cAAC ligands have been studied at the BP86/TZ2P level of theory and compared with homoleptic group 14 compounds. The EDA-NOCV (energy decomposition analysis-natural orbitals for chemical valence) analysis indicates that the interaction between the two carbene ligands and the central C-atom in 1C can be best represented as one 3c-2e electron sharing σ-bond and one 3c-2e donor-acceptor σ-bond. There exists an electron sharing interaction between the π-type orbital on the central C-atom and the C-N π* orbital of cAAC and a π-back-donation from the σ-type lone pair on the central C-atom to the π*-MO of NHC. This bonding description is equivalent to the localized bonding representation, where the central C-atom forms two electron sharing bonds and two donor-acceptor bonds with cAAC and NHC ligands. However, the bonding between the carbene ligands and the heavier group 14 element can be best represented as two 2c-2e donor-acceptor σ-bonds and a π-back-donation from group 14 element to C-N π* orbital of cAAC. This bonding description is well supported by the geometrical and Natural Bond Orbital (NBO) analyses. Hence, 1C can be best described as a carbene and the heavier analogues can be best described as tetrylones. However, the high first (287.6-274.3 kcal mol ) and second proton affinities (162.0-158.5 kcal mol ) suggest that 1E (E=C-Sn) behave as tetrylones.

摘要

在BP86/TZ2P理论水平下研究了含NHC和cAAC配体的杂配二价14族化合物1E(E = C - Sn)的电子结构和反应活性,并与均配14族化合物进行了比较。EDA - NOCV(能量分解分析 - 化学价自然轨道)分析表明,1C中两个卡宾配体与中心C原子之间的相互作用可以最好地表示为一个3c - 2e电子共享σ键和一个3c - 2e供体 - 受体σ键。中心C原子上的π型轨道与cAAC的C - N π轨道之间存在电子共享相互作用,并且存在从中心C原子上的σ型孤对向NHC的π - MO的π - 反馈。这种键合描述等同于局域键合表示,其中中心C原子与cAAC和NHC配体形成两个电子共享键和两个供体 - 受体键。然而,卡宾配体与较重的14族元素之间的键合可以最好地表示为两个2c - 2e供体 - 受体σ键以及从14族元素到cAAC的C - N π*轨道的π - 反馈。几何和自然键轨道(NBO)分析很好地支持了这种键合描述。因此,1C可以最好地描述为卡宾,而较重的类似物可以最好地描述为四价碳化合物。然而,较高的第一(287.6 - 274.3 kcal mol)和第二质子亲和力(162.0 - 158.5 kcal mol)表明1E(E = C - Sn)表现为四价碳化合物。

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