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Hydride oxidation from a titanium–aluminum bimetallic complex: insertion thermal and electrochemical reactivity

机译:钛-铝双金属配合物的氢化物氧化:插入热和电化学反应

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摘要

We report the synthesis and reactivity of paramagnetic heterometallic complexes containing a Ti(iii)-μ-H-Al(iii) moiety. Combining different stoichiometries amounts of Cp2TiCl and KH3AlC(TMS)3 (Cp = cyclopentadienyl, TMS = trimethylsilyl) resulted in the formation of either bimetallic Cp2Ti(μ-H)2(H)AlC(TMS)3 (>2) or trimetallic (Cp2Ti)2(μ-H)3(H)AlC(TMS)3 (>3) via salt metathesis pathways. While these complexes were indefinitely stable at room temperature, the bridging hydrides were readily activated upon exposure to heteroallenes, heating, or electrochemical oxidation. In each case, formal hydride oxidation occurred, but the isolated product maintained the +3 oxidation state at both metal centers. The nature of this reactivity was explored using deuterium labelling experiments and Density Functional Theory (DFT) calculations. It was found that while C–H activation from the Ti(iii) bimetallic may occur through a σ-bond metathesis pathway, chemical oxidation to Ti(iv) promotes bimolecular reductive elimination of dihydrogen to form a Ti(iii) product.
机译:我们报告了含有Ti(iii)-μ-H-Al(iii)部分的顺磁性杂金属配合物的合成和反应活性。结合不同化学计量的Cp2TiCl和KH3AlC(TMS)3(Cp =环戊二烯基,TMS =三甲基甲硅烷基)导致形成双金属Cp2Ti(μ-H)2(H)AlC(TMS)3(> 2 )或三金属(Cp2Ti)2(μ-H)3(H)AlC(TMS)3(> 3 )通过盐复分解途径。尽管这些络合物在室温下无限稳定,但在暴露于杂丙二烯,加热或电化学氧化后,桥接氢化物很容易被活化。在每种情况下,都会发生正式的氢化物氧化,但分离出的产物在两个金属中心都保持+3氧化态。使用氘标记实验和密度泛函理论(DFT)计算来探索这种反应性的性质。研究发现,虽然双金属Ti(iii)的C–H活化可能通过σ键复分解途径发生,但化学氧化成Ti(iv)会促进双分子还原性消除二氢而形成Ti(iii)产物。

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