Department of Chemistry, University of Oxford, South Parks Road, Oxford, OX1 3QZ, UK.
College of Pharmacy, University of Babylon, Hilla, Iraq.
Chemistry. 2018 Apr 6;24(20):5309-5318. doi: 10.1002/chem.201704727. Epub 2017 Dec 28.
The synthesis and physical properties of two new cationic tri-metallic chains, [(PEt ) RuCl M'Cl Ru(PEt ) ] , M'=Rh and Ir are reported. These are isostructural with a previously reported 17-electron all-ruthenium analogue, but replacing a d Ru ion in the central position with d Rh /Ir has a significant impact on the nature of the metal-metal interactions. All three materials have been characterized electrochemically at the 18-, 17- and 16-electron levels. X-ray crystallography and spectroelectrochemistry, complemented by electronic structure analysis at the DFT and CASPT2 levels, indicate that whilst the presence of a Ru ion in the center of the chain allows multi-center covalent bonding to develop, a closed-shell Rh /Ir ion pushes the system towards the exchange-coupled limit, where the outer Ru centers are only weakly interacting. This family of three isostructural compounds reveals how changes in metal composition can have subtle effects on physical properties of systems that lie close to the localized/delocalized borderline.
报告了两种新型阳离子三金属链[(PEt ) RuCl M'Cl Ru(PEt ) ]的合成和物理性质,M '=Rh 和 Ir。这些与之前报道的具有 17 个电子的全钌类似物是同构的,但用 d Rh/Ir 取代中心位置的 d Ru 离子对金属-金属相互作用的性质有显著影响。这三种材料都在 18、17 和 16 电子水平上进行了电化学表征。X 射线晶体学和光谱电化学,辅以 DFT 和 CASPT2 水平的电子结构分析,表明尽管链中心存在 Ru 离子允许多中心共价键的形成,但封闭壳层 Rh/Ir 离子将系统推向交换耦合极限,其中外部 Ru 中心的相互作用较弱。这一系列三种同构化合物揭示了金属成分的变化如何对接近定域/离域边界的系统的物理性质产生微妙的影响。