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Dioxygen Activation by a Macrocyclic Copper Complex Leads to a Cu2O2 Core with Unexpected Structure and Reactivity

机译:大环铜络合物的双氧活化导致Cu2O2核具有意外的结构和反应性

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摘要

We report the CuI/O2 chemistry of complexes derived from the macrocylic ligands 14-TMC (1,4,8,11-tetramethyl-1,4,8,11-tetraazacyclotetradecane) and 12-TMC (1,4,7,10-tetramethyl-1,4,7,10-tetraazacyclododecane). While [(14-TMC)CuI]+ is unreactive towards dioxygen, the smaller analog [(12-TMC)CuI(CH3CN)]+ reacts with O2 to give a side-on bound peroxo-dicopper(II) species (SP), confirmed by spectroscopic and computational methods. Intriguingly, 12-TMC as a N4 donor ligand generates SP species, thus in contrast with the previous observation that such species are generated by N2 and N3 ligands. In addition, the reactivity of this macrocyclic side-on peroxodicopper(II) differs from typical SP species, because it reacts only with acid to release H2O2, in contrast with the classic reactivity of Cu2O2 cores. Kinetics and computations are consistent with a protonation mechanism whereby the TMC acts as a hemilabile ligand and shuttles H+ to an isomerized peroxo core.
机译:我们报道了由大环配体14-TMC(1,4,8,11-tetramethyl-1,4,8,11-tetraazacyclo十四decane)和12-TMC衍生的配合物的Cu I / O2化学(1,4,7,10-四甲基-1,4,7,10-四氮杂环十二烷)。尽管[(14-TMC)Cu I ] + 对双氧没有反应性,但较小的类似物[(12-TMC)Cu I (CH3CN )] + 与O2反应,生成侧键结合的过氧二氯(II)物种( S P),已通过光谱和计算方法证实。有趣的是,作为N4供体配体的12-TMC生成 S P物种,因此与先前的观察结果相反,该物种是由N2和N3配体生成的。此外,这种大环侧过氧化物二铜(II)的反应性不同于典型的 S P物质,因为它仅与酸反应释放出H2O2,而Cu2O2核的经典反应性却与此相反。动力学和计算与质子化机理一致,在该质子化机理中,TMC充当半不稳定配体,将H + 穿梭到异构化的过氧核心。

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