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首页> 外文期刊>Chemistry: A European journal >Metal-Ligand Cooperativity in a Methandiide-Derived Iridium Carbene Complex
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Metal-Ligand Cooperativity in a Methandiide-Derived Iridium Carbene Complex

机译:甲烷二胺衍生的铱碳配合物中的金属配体协同性

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摘要

The synthesis, electronic structure, and reactivity of the first Group9 carbene complex, [Cp*IrL] [L=C(Ph2PS)(SO2Ph)] (2), based on a dilithio methandiide are reported. Spectroscopic as well as computational studies have shown that, despite using a late transition-metal precursor, sufficient charge transfer occurred from the methandiide to the metal, resulting in a stable, nucleophilic carbene species with pronounced metal-carbon double-bond character. The potential of this iridium complex in the activation of a series of E-H bonds by means of metal-ligand cooperation has been tested. These studies have revealed distinct differences in the reactivity of 2 compared to a previously reported ruthenium analogue. Whereas attempts to activate the O-H bond in different phenol derivatives resulted in ligand cleavage, H-H and Si-H activation as well as dehydrogenation of isopropanol have been accomplished. These reactions are driven by the transformation of the carbene to an alkyl ligand. Contrary to a previously reported ruthenium carbene system, the dihydrogen activation has been found to proceed by a stepwise mechanism, with the activation first taking place solely at the metal. The activated products further reacted to afford a cyclometalated complex through liberation of the activated substrates. In the case of triphenylsilane, cyclometalation could thus be induced by a substoichiometric (i.e., catalytic) amount of silane.
机译:报道了基于二硫代巯基乙二胺的第9族卡宾配合物[Cp * IrL] [L = C(Ph2PS)(SO2Ph)](2)的合成,电子结构和反应性。光谱学和计算研究表明,尽管使用了晚期过渡金属前体,但从二甲双胍到金属的电荷转移仍然足够,从而形成了稳定的,具有明显的金属-碳双键特征的亲核卡宾物种。已经测试了这种铱配合物在通过金属-配体配合作用激活一系列E-H键中的潜力。这些研究表明与先前报道的钌类似物相比,2的反应性存在明显差异。尽管试图活化不同酚衍生物中的O-H键导致配体裂解,但是已经完成了H-H和Si-H的活化以及异丙醇的脱氢。这些反应是由卡宾转化为烷基配体驱动的。与先前报道的钌卡宾体系相反,发现二氢活化是通过逐步机理进行的,其中活化首先仅在金属上进行。活化的产物通过释放活化的底物进一步反应以提供环金属化的配合物。在三苯基硅烷的情况下,因此可以通过亚化学计量(即催化)量的硅烷来诱导环金属化。

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