Lionetti Davide, Day Victor W, Lassalle-Kaiser Benedikt, Blakemore James D
Department of Chemistry, University of Kansas, 1251 Wescoe Hall Drive, Lawrence, KS 66045, USA.
Chem Commun (Camb). 2018 Feb 13;54(14):1694-1697. doi: 10.1039/c7cc09164h.
The ligand 2,2'-bipyridine (bpy) can support metal centers in low formal oxidation states by delocalization of electron density into its π-system. We show that, in a model rhodium complex supported by the pentamethylcyclopentadienyl ligand (Cp*), the analogous dimethyldipyridylmethane ligand (Medpma) enforces a bpy-like coordination environment but disrupts the inter-ring conjugation responsible for charge delocalization upon metal reduction. As a result, reduction proceeds in discrete one-electron steps (Rh(iii) to Rh(ii) to Rh(i)), contrasting with the 2e chemistry engendered by bpy. Upon reduction to Rh(i), the Medpma ligand rearranges to activate strong π-backbonding via facial coordination of one pyridine motif. Structural and spectroscopic studies confirm stabilization of the Rh(i) center in this compound, revealing a mode of metal-ligand cooperation that represents a useful counterpoint to charge delocalization in conjugated poly(pyridyl) ligands.
配体2,2'-联吡啶(bpy)可通过将电子密度离域到其π体系中来支持处于低形式氧化态的金属中心。我们表明,在由五甲基环戊二烯基配体(Cp*)支持的模型铑配合物中,类似的二甲基二吡啶甲烷配体(Medpma)形成了类似bpy的配位环境,但破坏了金属还原时负责电荷离域的环间共轭。结果,还原以离散的单电子步骤进行(Rh(iii)到Rh(ii)再到Rh(i)),这与bpy产生的2e化学过程形成对比。还原为Rh(i)后,Medpma配体重新排列,通过一个吡啶基序的面式配位激活强π反馈键。结构和光谱研究证实了该化合物中Rh(i)中心的稳定性,揭示了一种金属-配体合作模式,这是共轭聚(吡啶基)配体中电荷离域的有用对应物。