异硫脲催化平面手性对环酚的酰化动力学和动力学拆分。

Andrew David Smith, Zhanyu Zhou, Kevin Kasten, Aidan P McKay, David B Cordes
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引用次数: 0

摘要

发展催化对映选择性制备平面手性对环烷衍生物的合成方法是合成界非常感兴趣的问题。迄今为止,相对较少的成功和有效的有机催化方法已经报道了这类分子。在这种情况下,本文描述了有效的异硫脲催化酰化动力学(KR)和动态动力学分辨率(DKR)方法,以产生一系列具有优异水平对映选择性的平面手性大环。使用5摩尔%的异硫脲(R)- btm和异丁酸酐,证明了构型稳定的平面手性大环酚的有效KR(6个例子,s = 50)。应用于构型不稳定的具有14至18个成员ansa链的大环酚,允许其有效的酰化DKR,产生具有优异对映选择性的所需产品(24个例子,高达95%的收率和98:2 er)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Isothiourea-Catalysed Acylative Kinetic and Dynamic Kinetic Resolution of Planar Chiral Paracyclophanols.

The development of synthetic methods for the catalytic enantioselective preparation of planar chiral paracyclophane derivaties is of considerable interest to the synthetic community. To date, relatively few successful and effective organocatalytic approaches to this molecular class have been reported. In this context, this manuscript describes effective isothiourea catalysed acylative kinetic (KR) and dynamic kinetic resolution (DKR) approaches to the generation of a range of planar chiral macrocycles with excellent levels of enantioselectivity. Effective KR of configurationally stable planar chiral macrocyclic phenols with 12- and 13-membered ansa-chains is demonstrated (6 examples, s = up to 50) using 5 mol% of the isothiourea (R)-BTM and isobutyric anhydride. Application to configurationally labile macrocyclic phenols with 14 to 18 membered ansa-chains allows their effective acylative DKR, generating the desired products with excellent enantioselectivity (24 examples, up to 95% yield and 98:2 er).

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