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三芳基硼在外围环金属化钌(II)阳离子配合物中环氰化物阴离子的结合。

Cyanide anion binding by a triarylborane at the outer rim of a cyclometalated ruthenium(II) cationic complex.

机构信息

Department of Chemistry, Texas A&M University, College Station, Texas 77843, USA.

出版信息

Inorg Chem. 2010 Jan 18;49(2):714-20. doi: 10.1021/ic9020349.

Abstract

As part of our ongoing interest in the design of boron-based cyanide anion receptors, we have synthesized a triaryl borane decorated by a cationic Ru(II) complex and have investigated its anion binding properties. This new borane, [(2,2'-bpy)Ru(kappa-C,N-2-(dimesitylborylphenyl)pyridinato)]OTf ([2]OTf), binds both fluoride and cyanide anions in organic solvents to afford 2-F and 2-CN whose crystal structures have been determined. UV-vis titrations in 9/1 CHCl(3)/DMF (vol.) afforded K((F(-))) = 1.1(+/-0.1) x 10(4) M(-1) and K((CN(-))) = 3.0(+/-1.0) x 10(6) M(-1) indicating that 2 has a higher affinity for cyanide than for fluoride in this solvent mixture. These elevated binding constants show that the cationic Ru(II) complex increases the anion affinity of these complexes via Coulombic and inductive effects. The UV-vis spectral changes which accompany either fluoride or cyanide binding to the boron center are similar and include a 30 nm bathochromic shift of the metal-to-ligand charge transfer band. This shift is attributed to an increase in the donor ability of the boron-substituted phenylpyridine ligand upon anion binding to the boron center. Accordingly, cyclic voltammetry revealed that the Ru(II/III) redox couple of [2]OTf (E(1/2) = +0.051 V vs Fc/Fc(+)) undergoes a cathodic shift upon F(-) (DeltaE(1/2) = -0.242 V vs Fc/Fc(+)) or CN(-) (DeltaE(1/2) = -0.198 V vs Fc/Fc(+)) binding.

摘要

作为我们对硼基氰化物阴离子受体设计的持续兴趣的一部分,我们合成了一种被阳离子 Ru(II) 配合物修饰的三芳基硼烷,并研究了其阴离子结合性质。这种新的硼烷,[(2,2'-bpy)Ru(kappa-C,N-2-(二甲基硼基苯基)吡啶基)]OTf([2]OTf),在有机溶剂中结合氟化物和氰化物阴离子,得到 2-F 和 2-CN,其晶体结构已确定。在 9/1 CHCl(3)/DMF(体积)中的 UV-vis 滴定得到 K((F(-))) = 1.1(+/-0.1) x 10(4) M(-1) 和 K((CN(-))) = 3.0(+/-1.0) x 10(6) M(-1),表明在该溶剂混合物中,2对氰化物的亲和力高于氟化物。这些升高的结合常数表明,阳离子 Ru(II) 配合物通过库仑和诱导效应增加了这些配合物对阴离子的亲和力。伴随硼中心与氟化物或氰化物结合的 UV-vis 光谱变化相似,包括金属-配体电荷转移带的 30nm 红移。这种位移归因于硼取代的苯基吡啶配体在硼中心与阴离子结合时供电子能力的增加。相应地,循环伏安法表明,[2]OTf 的 Ru(II/III) 氧化还原对(E(1/2) = +0.051 V 对 Fc/Fc(+))在 F(-)(DeltaE(1/2) = -0.242 V 对 Fc/Fc(+))或 CN(-)(DeltaE(1/2) = -0.198 V 对 Fc/Fc(+))结合时发生阴极位移。

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