对映选择合成
硼氢化
硅氢加成
金属化
金属有机骨架
催化作用
化学
均相催化
组合化学
多相催化
有机化学
吸附
作者
Rajashree Newar,Naved Akhtar,Neha Antil,Ajay Kumar,Sakshi Shukla,Wahida Begum,Kuntal Manna
标识
DOI:10.1002/ange.202100643
摘要
Abstract We report a strategy to develop heterogeneous single‐site enantioselective catalysts based on naturally occurring amino acids and earth‐abundant metals for eco‐friendly asymmetric catalysis. The grafting of amino acids within the pores of a metal‐organic framework (MOF), followed by post‐synthetic metalation with iron precursor, affords highly active and enantioselective (>99 % ee for 10 examples) catalysts for hydrosilylation and hydroboration of carbonyl compounds. Impressively, the MOF‐Fe catalyst displayed high turnover numbers of up to 10 000 and was recycled and reused more than 15 times without diminishing the enantioselectivity. MOF‐Fe displayed much higher activity and enantioselectivity than its homogeneous control catalyst, likely due to the formation of robust single‐site catalyst in the MOF through site‐isolation.
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