Askarizadeh Elham, Devoille Aline M J, Boghaei Davar M, Slawin Alexandra M Z, Love Jason B
EaStCHEM School of Chemistry, University of Edinburgh, Joseph Black Building, The King's Buildings, West Mains Road, Edinburgh EH9 3JJ, UK.
Inorg Chem. 2009 Aug 3;48(15):7491-500. doi: 10.1021/ic900871g.
The synthesis and structures of two new octadentate, Schiff-base calixpyrrole macrocycles are presented in which modifications at the meso-substituents (L(1)) or the aryl spacer between the two pyrrole-imine donor compartments (L(2)) are introduced. The outcomes of these changes are highlighted in the structures of binuclear Pacman complexes of these macrocycles, [M(2)(L(1))] and [M(2)(L(2))]. Both palladium and cobalt complexes of the fluorenyl-meso-substituted macrocycle H(4)L(1) adopt rigid, but laterally twisted geometries with enclosed bimetallic microenvironments; a consequence of this spatial constraint is an exo-exo-bonding mode of pyridine in the dicobalt complex [Co(2)(py)(2)(L(1))]. In contrast, the use of an anthracenyl backbone between the two donor compartments (H(4)L(2)) generates a binuclear palladium complex in which the two PdN(4) environments are approximately cofacial and separated by 5.3 A, so generating a bimetallic complex that is structurally very similar to binuclear compounds of cofacial diporphyrins.
本文介绍了两种新型八齿席夫碱杯吡咯大环化合物的合成与结构,其中在中取代基(L(1))或两个吡咯 - 亚胺供体单元之间的芳基间隔基(L(2))上引入了修饰。这些变化的结果在这些大环化合物的双核“吃豆人”配合物[M(2)(L(1))]和[M(2)(L(2))]的结构中得到了体现。芴基中取代的大环化合物H(4)L(1)的钯和钴配合物都采用刚性但横向扭曲的几何结构,具有封闭的双金属微环境;这种空间限制的一个结果是在二钴配合物[Co(2)(py)(2)(L(1))]中吡啶的外 - 外键合模式。相比之下,在两个供体单元之间使用蒽基主链(H(4)L(2))生成了一种双核钯配合物,其中两个PdN(4)环境大致共面,间距为5.3 Å,从而生成了一种结构上与共面双卟啉双核化合物非常相似的双金属配合物。