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Asymmetric catalysis with N-heterocyclic carbenes as non-covalent chiral templates

机译:N -杂环卡宾作为非共价手性模板的不对称催化

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摘要

N -heterocyclic carbenes are a class of persistent carbenes stabilized by adjacent heteroatoms that are part of a heterocycle. They play a central role in multiple enzymatic biosynthetic reactions that involve thiamine diphosphate . Inspired by this biocatalysis machinery, N -heterocyclic carbenes have emerged as one of the most versatile classes of organocatalysts for organic reactions. However, the asymmetric synthesis of carbon–carbon bonds through a non-covalent interaction mechanism has not been previously established for chiral carbenes. Here, we report an N -heterocylic carbene-catalysed, highly enantioselective process that uses weak hydrogen bonds to relay asymmetric bias. We find that catalytic amounts of hexafluoroisopropanol are the critical proton shuttle that facilitates hydrogen transfer to provide high-reaction rates and high enantioselectivity. We demonstrate that a successful asymmetric reaction of this type can be accomplished through a rational design that balances the pKa values of the substrate, the carbene precursor and the product.
机译:N-杂环卡宾是一类被相邻杂原子稳定的持久性卡宾,杂原子是杂环的一部分。它们在涉及硫胺素二磷酸的多种酶法生物合成反应中发挥核心作用。受这种生物催化机制的启发,N-杂环卡宾已成为有机反应中用途最广泛的有机催化剂类别之一。但是,以前尚未建立通过非共价相互作用机理的碳-碳键的不对称合成。在这里,我们报告了一个N-杂环卡宾催化的,高对映选择性的过程,该过程使用弱氢键来传递不对称偏压。我们发现催化量的六氟异丙醇是促进氢转移以提供高反应速率和高对映选择性的关键质子穿梭。我们证明了这种成功的不对称反应可以通过合理的设计来实现,该设计可以平衡底物,卡宾前体和产物的pKa值。

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