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Enantioselective Silyl Protection of Alcohols Promoted by a Combination of Chiral and Achiral Lewis Basic Catalysts

机译:手性和非手性路易斯碱性催化剂的组合促进醇的对映选择性硅烷保护

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摘要

Catalytic enantioselective mono-silylations of diols and polyols furnish valuable alcohol-containing molecules in high enantiomeric purity. These transformations, however, require high catalyst loadings (20-30 mol%) and long reaction times (2-5 days). Here, we report that a counterintuitive strategy – involving the use of an achiral co-catalyst that is structurally similar to the chiral catalyst – provides an effective solution to this problem. A combination of seemingly competitive Lewis-basic molecules can function in concert such that one serves as an achiral nucleophilic promoter while the other performs as a chiral Brønsted base. Upon addition of 7.5-20 mol % of commercially available N-heterocycle (5-ethylthiotetrazole), reactions typically proceed within one hour, delivering the desired products in high yields and enantiomeric ratios. In some instances, there is no reaction in the absence of the achiral base, yet presence of the achiral co-catalyst results in facile formation of products in high enantiomeric purity.
机译:二醇和多元醇的催化对映选择性单甲硅烷基化以高对映体纯度提供了有价值的含醇分子。然而,这些转化需要高的催化剂负载量(20-30mol%)和长的反应时间(2-5天)。在这里,我们报告说,违反直觉的策略-涉及使用结构上与手性催化剂相似的非手性助催化剂-为该问题提供了有效的解决方案。表面上具有竞争性的Lewis碱性分子的组合可以协同工作,从而一个用作非手性亲核启动子,另一个用作手性Brønsted碱基。加入7.5-20mol%的市售N-杂环(5-乙基硫代四唑)后,反应通常在1小时内进行,以高收率和对映体比率递送所需产物。在一些情况下,在不存在非手性碱的情况下不发生反应,但是非手性助催化剂的存在导致容易形成高对映体纯度的产物。

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