首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >The Tolman electronic parameter (TEP) and the metal-metal electronic communication in ditopic NHC complexes
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The Tolman electronic parameter (TEP) and the metal-metal electronic communication in ditopic NHC complexes

机译:双位NHC配合物中的托尔曼电子参数(TEP)和金属-金属电子通信

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摘要

Whereas the electronic communication between metals in dimetallic organometallic compounds is often assessed through cyclic voltammetric measurements, we have found that the variations in the Tolman electronic parameter (TEP) can also be an alternative and effective way of determining this type of interaction. The TEP values of several (CO)_3Ni-NHC-X systems with five different ditopic NHC ligand systems triazolyldiylidene (A), bis(imidazolylidene) (B), benzobis(imidazolylidene) (C), cyclopentaf,g acenaphthylenebis(imidazolylidene) (D) and bis(imidazolidinylidene) (F) were determined by means of DFT calculations. Based on these values, the electron-withdrawing character of the X metal fragments employed in this study was found to increase in the order IrCp(CO) → RhCl(COD) → Ni(CO) _3 → Cr(CO)_5 → RhCl(CO)_2. We found that the degree of electronic interaction through the ditopic NHC ligands is the strongest in A, followed by B and F, while being weak in B and C. The TEP values and the quantitative analysis of the upper molecular orbitals of A and F and their (CO)_3Ni-NHC-Ni(CO)_3 complexes strongly suggest that the principal electronic interaction between the metal centres of the M-NHC-M′ complexes is of σ-type, via the delocalized HOMO and HOMO - 1 orbitals of the NHC ligands.
机译:虽然双金属有机金属化合物中金属之间的电子通信通常通过循环伏安法测量来评估,但我们发现托尔曼电子参数 (TEP) 的变化也可以是确定这种相互作用的替代和有效方法。采用DFT计算法测定了具有5种不同双位NHC配体体系[三唑基二亚基(A)、双咪唑亚基(B)、苯并双(咪唑亚基)(C)、环戊并[f,g]苊双(咪唑亚基)(D)和双(亚咪唑烷基)(F)]的几种(CO)_3Ni-NHC-X体系的TEP值。基于这些值,发现本研究中采用的X金属碎片的吸电子特性以IrCp(CO)→RhCl(COD)→Ni(CO)_3→Cr(CO)_5→RhCl(CO)_2的顺序增加。我们发现,通过双位NHC配体的电子相互作用程度在A中最强,其次是B和F,而在B和C中较弱。TEP值和A和F及其(CO)_3Ni-NHC-Ni(CO)_3配合物的上分子轨道的定量分析强烈表明,通过NHC配体的离域HOMO和HOMO-1轨道,M-NHC-M′配合物金属中心之间的主要电子相互作用是σ型的。

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