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首页> 外文期刊>Chemical science >Asymmetric [4+2] annulation of 5H-thiazol-4-ones with a chiral dipeptide-based Bronsted base catalyst
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Asymmetric [4+2] annulation of 5H-thiazol-4-ones with a chiral dipeptide-based Bronsted base catalyst

机译:5H-噻唑-4-酮与手性二肽基布朗斯台德碱催化剂的不对称[4 + 2]环化

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摘要

Versatile synthetic strategies that access diverse chemical substrates in a highly chemo-and stereoselective manner are crucial but demanding. Construction of chiral molecules with multiple (hetero)quaternary carbon stereocenters in a single fashion is a particularly significant challenge, with important applications in the synthesis of a range of bioactive compounds containing the 1,4-sulfur bridged piperidinone structural motif. The asymmetric synthesis of these entities is complicated due to the need to build at least two hetero-quaternary stereocenters concurrently. In order to achieve this, we have developed a new family of dipeptide-based multifunctional Bronsted base organocatalysts that are highly capable of the first asymmetric [4 + 2] annulation reaction of 5H-thiazol-4-ones with electron-deficient alkenes. This protocol could be applied to a series of alkenes such as nitroalkenes, 4-oxo-4arylbutenones, 4-oxo-4-arylbutenoates and methyleneindolinones, providing an efficient approach to valuable chiral 1,4-sulfur bridged piperidinones and their derivatives with multiple hetereo-quaternary stereogenic centers in high yields and enantioselectivities. Density functional theory studies involving 5H-thiazol-4-one and nitroolefin catalysis propose stereochemical insights into the origin of enantioand chemo-selectivity.
机译:以高度化学和立体选择性的方式访问各种化学底物的多功能合成策略至关重要,但要求很高。以单一方式构建具有多个(杂)季碳立体中心的手性分子是一项特别重大的挑战,在合成包含1,4-硫桥连哌啶酮结构基序的一系列生物活性化合物中具有重要应用。由于需要同时建立至少两个异四元立体中心,因此这些实体的不对称合成非常复杂。为了实现这一目标,我们开发了一个新的基于二肽的多功能布朗斯台德碱有机催化剂家族,该家族催化剂能够高效地进行5H-噻唑-4-酮与电子不足的烯烃的首次不对称[4 + 2]环化反应。该协议可以应用于一系列烯烃,例如硝基烯烃,4-氧代-4芳基丁烯酮,4-氧代-4-芳基丁烯酸酯和亚甲基吲哚酮,为有价值的手性1,4-硫桥联哌啶子酮及其衍生物提供了有效的方法-高产和对映选择性的四级立体异构中心。涉及5H-噻唑-4-酮和硝基烯烃催化的密度泛函理论研究提出了对映体和化学选择性起源的立体化学见解。

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