首页> 外文期刊>European journal of organic chemistry >Evolution of late transition-metal-catalyzed intermolecular reductive coupling reaction of [60]fullerene and N-sulfonylaldimines: Competing formation of hydrobenzylated [60]fullerenes and 1,2-dihydrofullerene
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Evolution of late transition-metal-catalyzed intermolecular reductive coupling reaction of [60]fullerene and N-sulfonylaldimines: Competing formation of hydrobenzylated [60]fullerenes and 1,2-dihydrofullerene

机译:[60]富勒烯与N-磺酰基醛亚胺的后期过渡金属催化的分子间还原偶联反应的演化:竞争形成氢苄基化的[60]富勒烯和1,2-二氢富勒烯

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摘要

A system based on late transition-metal halides, phosphanes, water, and reducing agents in 1,2-dichlorobenzene can efficiently catalyze the intermolecular reductive coupling of [60]fullerene with N-sulfonylaldimines to afford novel 1,2-hydrobenzylated [60]fullerene derivatives. We found that both group VII B metals (cobalt, rhodium, iridium) and group VIII B metals (nickel, palladium, platinum) perform this coupling reaction. A control experiment in the absence of aldimines produced C _60H _2, which showed that the reaction might proceed via a [60]fullerene metal complex [M(η ~2-C _60)(ligand)]. An isotope labeling experiment with D _2O as deuterium source resulted in deuterioaryzilation with deuterium bonded to the sp ~3-carbon of C _60, providing evidence of a five-membered azametallacycle intermediate. Evaluation of the scope of reductive coupling reaction with versatile aldimines gave access to the hydroaryzilation products. All the reductive coupling products were completely characterized by IR and NMR spectroscopy and ESI mass spectrometry. A possible reaction mechanism based on these results is proposed. This discovery of the formation of reductive coupling compounds and metal-catalyzed formation of C _60H _2 are both new to metal catalysis and fullerene chemistry. A system based on late transition-metal halides, phosphanes, water, and reducing agents in o-DCB can efficiently catalyze intermolecular reductive coupling between [60]fullerene and N-sulfonylaldimines to afford new 1,2-hydrobenzylated [60]fullerene derivatives. The reaction yields are moderate, due to the formation of C _60H _2 as a byproduct. A possible reaction mechanism is proposed.
机译:一种基于1,2-二氯苯中的后期过渡金属卤化物,膦,水和还原剂的系统可以有效催化[60]富勒烯与N-磺酰基醛亚胺的分子间还原偶联,从而提供新颖的1,2-氢苄基化[60]富勒烯衍生物。我们发现,VII B族金属(钴,铑,铱)和VIII B族金属(镍,钯,铂)均执行该偶联反应。在不存在醛亚胺的情况下的对照实验产生了C _60H _2,表明该反应可能通过[60]富勒烯金属配合物[M(η〜2-C _60)(配体)]进行。以D _2O为氘源的同位素标记实验导致氘重芳基化,氘与C _60的sp〜3-碳键合,提供了五元氮杂金属环中间体的证据。评估与通用醛亚胺的还原偶联反应的范围使人们获得了氢芳基化产物。所有还原偶联产物均通过IR和NMR光谱以及ESI质谱进行了完全表征。根据这些结果,提出了一种可能的反应机理。还原偶联化合物的形成和C _60H _2的金属催化的形成的发现对于金属催化和富勒烯化学都是新的。基于邻-DCB中的后期过渡金属卤化物,膦,水和还原剂的系统可以有效催化[60]富勒烯与N-磺酰基亚胺之间的分子间还原偶联,从而提供新的1,2-氢苄基化[60]富勒烯衍生物。由于形成副产物C _60H _2,反应产率中等。提出了一种可能的反应机理。

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