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Two dimensional inorganic electride-promoted electron transfer efficiency in transfer hydrogenation of alkynes and alkenes

机译:二维无机电子促进炔烃和烯烃转移加氢的电子转移效率

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摘要

A simple and highly efficient transfer hydrogenation of alkynes and alkenes by using a two-dimensional electride, dicalcium nitride ([Ca2N]+·e), as an electron transfer agent is disclosed. Excellent yields in the transformation are attributed to the remarkable electron transfer efficiency in the electride-mediated reactions. It is clarified that an effective discharge of electrons from the [Ca2N]+·e electride in alcoholic solvents is achieved by the decomposition of the electride via alcoholysis and the generation of ammonia and Ca(OiPr)2. We found that the choice of solvent was crucial for enhancing the electron transfer efficiency, and a maximum efficiency of 80% was achieved by using a DMF mixed isopropanol co-solvent system. This is the highest value reported to date among single electron transfer agents in the reduction of C–C multiple bonds. The observed reactivity and efficiency establish that electrides with a high density of anionic electrons can readily participate in the reduction of organic functional groups.
机译:使用二维驻极体氮化物二钙氮化钙([Ca2N] + ·e )作为电子转移剂,可进行炔烃和烯烃的简单高效转移加氢被披露。出色的转化率归因于驻极体介导的反应中出色的电子转移效率。可以清楚地发现,通过醇解作用分解电子,可以从[Ca2N] + ·e -驻电极中有效释放电子。氨和Ca(O i Pr)2。我们发现溶剂的选择对于提高电子转移效率至关重要,并且通过使用DMF混合异丙醇共溶剂系统可达到80%的最大效率。这是迄今为止单电子转移剂中减少的C–C多键的最高值。观察到的反应性和效率确定具有高密度阴离子电子的驻极体可以容易地参与有机官能团的还原。

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