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阳离子金属-乙二炔配合物中铁、钌和锇的 M-Ga 键性质,[(η5-C5H5)(L)2M(GaX)]+:理论研究。

Nature of M-Ga Bonds in cationic metal-gallylene complexes of iron, ruthenium, and osmium, [(η5-C5H5)(L)2M(GaX)]+: a theoretical study.

机构信息

School of Chemical Sciences, Devi Ahilya University Indore, Indore 452001, India.

出版信息

Inorg Chem. 2011 Mar 7;50(5):1798-807. doi: 10.1021/ic102217z. Epub 2011 Jan 4.

Abstract

Density Functional Theory calculations have been performed for the cationic half-sandwich gallylene complexes of iron, ruthenium, and osmium (η(5)-C(5)H(5))(L)(2)M(GaX) (M = Fe, L = CO, PMe(3); X = Cl, Br, I, NMe(2), Mes; M = Ru, Os: L = CO, PMe(3); X = I, NMe(2), Mes) at the BP86/TZ2P/ZORA level of theory. Calculated geometric parameters for the model iron iodogallylene system (η(5)-C(5)H(5))(Me(3)P)(2)Fe(GaI) are in excellent agreement with the recently reported experimental values for (η(5)-C(5)Me(5))(dppe)Fe(GaI). The M-Ga bonds in these systems are shorter than expected for single bonds, an observation attributed not to significant M-Ga π orbital contributions, but due instead primarily to high gallium s-orbital contributions to the M-Ga bonding orbitals. Such a finding is in line with the tenets of Bent's Rule insofar as correspondingly greater gallium p-orbital character is found in the bonds to the (more electronegative) gallylene substituent X. Consistent with this, ΔE(σ) is found to be overwhelmingly the dominant contribution to the orbital interaction between (η(5)-C(5)H(5))(L)(2)M and [GaX] fragments (with ΔE(π) equating to only 8.0-18.6% of the total orbital contributions); GaX ligands thus behave as predominantly σ-donor ligands. Electrostatic contributions to the overall interaction energy ΔE(int) are also very important, being comparable in magnitude (or in some cases even larger than) the corresponding orbital interactions.

摘要

已在 BP86/TZ2P/ZORA 理论水平上对铁、钌和锇的阳离子半夹心加里烯配合物 (η(5)-C(5)H(5))(L)(2)M(GaX)(M = Fe,L = CO,PMe(3);X = Cl,Br,I,NMe(2),Mes;M = Ru,Os:L = CO,PMe(3);X = I,NMe(2),Mes)进行了密度泛函理论计算。模型铁碘加里烯系统 (η(5)-C(5)H(5))(Me(3)P)(2)Fe(GaI) 的计算几何参数与最近报道的 (η(5)-C(5)Me(5))(dppe)Fe(GaI) 的实验值非常吻合。这些系统中的 M-Ga 键比预期的单键短,这一观察结果归因于 M-Gaπ 轨道的贡献不显著,而是主要由于高 Ga s 轨道对 M-Ga 成键轨道的贡献。这样的发现符合本特规则的原则,因为在与(更具电负性的)加里烯取代基 X 的键中发现了相应更大的 Ga p 轨道特征。与此一致,ΔE(σ) 被发现是 (η(5)-C(5)H(5))(L)(2)M 和 [GaX] 片段之间轨道相互作用的主要贡献(ΔE(π) 仅占总轨道贡献的 8.0-18.6%);GaX 配体因此表现为主要的 σ-供体配体。对总相互作用能 ΔE(int) 的静电贡献也非常重要,其大小相当(在某些情况下甚至大于)相应的轨道相互作用。

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