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模型化与真实含碳链有机金属双核配合物的电子结构:异同点

Electronic structure of modelized vs. real carbon-chain containing organometallic dinuclear complexes: similarities and differences.

作者信息

Ladjarafi Abdelkader, Costuas Karine, Meghezzi Hacène, Halet Jean-François

机构信息

Laboratory of Thermodynamics and Molecular Modeling, Faculty of Chemistry, USTHB, Algiers, Algeria.

出版信息

J Mol Model. 2015 Apr;21(4):71. doi: 10.1007/s00894-015-2623-3. Epub 2015 Mar 8.

DOI:10.1007/s00894-015-2623-3
PMID:25750020
Abstract

DFT calculations were carried out on the homo- and hetero-bimetallic model wires [(η(5)-C5H5)(dpe)Fe-C≡C-C6H4-C≡C-Fe(dpe)(η(5)-C5H5)] (1'), [(η(7)-C7H7)(dpe)Mo-C≡C-C6H4-C≡C-Mo(dpe)(η(7)-C7H7)] (2'), and [(η(5)-C5H5)(dpe)Fe-C≡C-C6H4-C≡C-Mo(dpe)(η(7)-C7H7)] (3') used to tentatively mimic [(η(5)-C5Me5)(dppe)Fe-C≡C-C6H4-C≡C-Fe(dppe)(η(5)-C5Me5)] (1), [(η(7)-C7H7)(dppe)Mo-C≡C-C6H4-C≡C-Mo(dppe)(η(7)-C7H7)] (2), and [(η(5)-C5Me5)(dppe)Fe-C≡C-C6H4-C≡C-Mo(dppe)(η(7)-C7H7)] (3), respectively in order to analyze the similarities and the differences between models and real compounds previously theoretically and experimentally studied, with respect to their molecular structures and properties. A comparison of the metrical data computed for the models and the real systems shows some slight discrepancy between the metal-ancillary ligand distances - shorter distances are observed in the formers - but comparable metal-Cα and Cα-Cβ distances. Incidentally, distances computed for the model molecules match more closely those measured experimentally. Replacement of a dppe ligand tethered to the metal centers by a dpe group does not much alter the electronic properties. Therefore, overall, data obtained for the Mo2 models 2' compare rather well with those computed for the real systems 2. Larger alteration is noticed when Cp* is substituted by Cp, even if the general trends observed for the real iron species 1 and 3 are kept overall for the iron models 1' and 3'. Indeed, the smaller electron-donor properties of Cp affect somewhat the nodal properties of the HOMOs (less metallic character) and increase the HOMO-LUMO gaps and the ionization potentials. Despite this, similarities between models and real compounds largely overtake differences. It is shown that calculations on models provide quite acceptable results.

摘要

对同核和异核双金属模型线[(η(5)-C5H5)(dpe)Fe-C≡C-C6H4-C≡C-Fe(dpe)(η(5)-C5H5)] (1'), [(η(7)-C7H7)(dpe)Mo-C≡C-C6H4-C≡C-Mo(dpe)(η(7)-C7H7)] (2'), 和[(η(5)-C5H5)(dpe)Fe-C≡C-C6H4-C≡C-Mo(dpe)(η(7)-C7H7)] (3')进行了密度泛函理论(DFT)计算,这些模型线用于尝试模拟[(η(5)-C5Me5)(dppe)Fe-C≡C-C6H4-C≡C-Fe(dppe)(η(5)-C5Me5)] (1), [(η(7)-C7H7)(dppe)Mo-C≡C-C6H4-C≡C-Mo(dppe)(η(7)-C7H7)] (2), 和[(η(5)-C5Me5)(dppe)Fe-C≡C-C6H4-C≡C-Mo(dppe)(η(7)-C7H7)] (3),以便从分子结构和性质方面分析模型与先前经过理论和实验研究的真实化合物之间的异同。对模型和真实体系计算得到的度量数据进行比较表明,金属 - 辅助配体距离存在一些细微差异——在前者中观察到较短的距离——但金属 - Cα和Cα - Cβ距离具有可比性。顺便提一下,为模型分子计算得到的距离与实验测量值更接近。将连接在金属中心的dppe配体替换为dpe基团并不会对电子性质产生太大改变。因此,总体而言,为Mo2模型2'获得的数据与为真实体系2计算得到的数据相当吻合。当用Cp取代Cp*时,会注意到有较大变化,即使对于真实铁物种1和3观察到的总体趋势在铁模型1'和3'中总体上得以保留。实际上,Cp较小的给电子性质在一定程度上影响了HOMO的节点性质(金属性降低),并增加了HOMO - LUMO能隙和电离势。尽管如此,模型与真实化合物之间的相似性在很大程度上超过了差异。结果表明,对模型进行的计算提供了相当可接受的结果。

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