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The effect of divergent-bite ligands on metal-metal bond distances in some paddlewheel complexes

机译:不同桨轮配合物中发散咬合配体对金属-金属键距的影响

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In a paddlewheel type bimetal unit, the most frequent arrangement of the bridging ligands has a conformation such that the two donor orbitals are directed along approximately parallel lines. However, when a ligand has one of the two donor atoms derived from a six-membered ring and the other from a fused five-membered ring, the two donor orbitals will be directed divergently. Such divergent-bite ligands might be expected to elongate the M-M bonds. A Cr-Cr core supported by a set of four divergent-bite ligands, Cr-2(CHIP)(4), where CHIP is the anion of 1',3'-dihydrospiro[cyclohexane-1,2'-[2N]imidazo[4,5-b]pyridine], has been synthesized and crystallographically characterized. It has a Cr-Cr distance of 2.016(1) Angstrom, which is much longer than those in paddlewheel complexes with non-divergent dinitrogen ligands. This is the first example of a dichromium complex supported by a set of four divergent-bite ligands and no axial coordination. An analogous complex, namely Mo-2(azin)(4), where azin represents the anion of 7-azaindole, has also been characterized. Together with W-2(azin)(4), which was previously reported, the first series of quadruple bonds wrapped in a sheath of four divergent-bite ligands has been obtained. A comparison of the M-M bond lengths with those in a homologous series having a more flexible ligand, DTolF, which is the anion of di-p-tolylformamidine, reveals that the Cr-Cr quadruple bonds are much more sensitive to the effect of the bridging ligand geometry than are Mo-Mo and W-W quadruple bonds; this is very similar to the trend in susceptibility of quadruple bonds towards axial coordination. (C) 2000 Elsevier Science S.A. All rights reserved. [References: 21]
机译:在桨轮型双金属单元中,桥联配体的最频繁排列具有这样的构型,使得两个供体轨道沿大致平行的线定向。但是,当配体具有两个衍生自六元环的供体原子之一,另一个衍生自稠合的五元环的另一个供体原子时,两个供体轨道将发散地定向。这样的发散咬合配体可望延长M-M键。由一组四个发散咬合配体Cr-2(CHIP)(4)支撑的Cr-Cr核,其中CHIP是1',3'-二氢螺环[环己烷-1,2'-[2N]的阴离子咪唑并[4,5-b]吡啶]已经合成并进行了晶体学表征。 Cr-Cr距离为2.016(1)埃,比具有不扩散二氮配体的明轮配合物长得多。这是由一组四个发散咬合的配体支持且没有轴向配位的重铬配合物的第一个例子。还已经表征了类似的络合物,即Mo-2(azin)(4),其中azin代表7-氮杂吲哚的阴离子。与先前报道的W-2(azin)(4)一起,获得了包裹在四个发散咬合配体鞘中的第一批四重键。 MM键长度与具有更灵活配体DTolF的同源序列的比较,DTolF是二对甲苯基甲form的阴离子,表明Cr-Cr四键对桥连效应更为敏感配体的几何形状比Mo-Mo和WW四重键高;这与四键对轴向配位的敏感性趋势非常相似。 (C)2000 Elsevier Science S.A.保留所有权利。 [参考:21]

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