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Polyoxometalate-based homochiral metal-organic frameworks for tandem asymmetric transformation of cyclic carbonates from olefins

机译:基于多金属氧酸盐的均相手性金属有机骨架可从烯烃中串联不对称转化环状碳酸酯

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摘要

Currently, great interest is focused on developing auto-tandem catalytic reactions; a substrate is catalytically transferred through mechanistically distinct reactions without altering any reaction conditions. Here by incorporating a pyrrolidine moiety as a chiral organocatalyst and a polyoxometalate as an oxidation catalyst, a powerful approach is devised to achieve a tandem catalyst for the efficient conversion of CO2 into value-added enantiomerically pure cyclic carbonates. The multi-catalytic sites are orderly distributed and spatially matched in the framework. The captured CO2 molecules are synergistically fixed and activated by well-positioned pyrrolidine and amine groups, providing further compatibility with the terminal W=O activated epoxidation intermediate and driving the tandem catalytic process in a single workup stage and an asymmetric fashion. The structural simplicity of the building blocks and the use of inexpensive and readily available chemical reagents render this approach highly promising for the development of practical homochiral materials for CO2 conversion.
机译:目前,人们非常关注开发自动串联催化反应。底物通过机械上不同的反应催化转移,而无需改变任何反应条件。在这里,通过并入吡咯烷部分作为手性有机催化剂和多金属氧酸盐作为氧化催化剂,设计了一种有效的方法来实现串联催化剂,以将CO2有效地转化为对映异构纯的环状碳酸酯。多催化位点在框架中有序分布并在空间上匹配。捕集到的CO2分子由位置合适的吡咯烷和胺基协同固定和活化,与末端W = O活化的环氧化中间体进一步相容,并以单个后处理阶段和不对称方式驱动串联催化过程。构件的结构简单性以及使用便宜且容易获得的化学试剂使该方法对于开发用于CO2转化的实际同手性材料极有希望。

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