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首页> 外文期刊>The Journal of Organic Chemistry >Stereoselective synthesis of 2,6- cis -substituted tetrahydropyrans: Br?nsted acid-catalyzed intramolecular oxa-conjugate cyclization of α,β-unsaturated ester surrogates
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Stereoselective synthesis of 2,6- cis -substituted tetrahydropyrans: Br?nsted acid-catalyzed intramolecular oxa-conjugate cyclization of α,β-unsaturated ester surrogates

机译:2,6-顺式取代的四氢吡喃的立体选择性合成:布朗斯台德酸催化的α,β-不饱和酯替代物的分子内氧杂-共轭环化

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摘要

Intramolecular oxa-conjugate cyclization (IOCC) of α,β- unsaturated carbonyl compounds, triggered by deprotonation with a base, represents a straightforward method for the synthesis of tetrahydropyrans. However, it has been known that stereochemical outcome of IOCC depends on the local structure of substrates and sometimes requires harsh reaction conditions and/or prolonged reaction times for selective formation of 2,6-cis-substituted tetrahydropyrans. These shortcomings limit the feasibility of IOCC in the context of complex natural product synthesis. In this paper, we describe Br?nsted acid-catalyzed IOCC of α,β-unsaturated ester surrogates (e.g., α,β-unsaturated thioesters, oxazolidinone imides, and pyrrole amides) under mild reaction conditions, which affords a series of synthetically versatile 2,6-cis-substituted tetrahydropyran derivatives with good to excellent stereoselectivity (dr from 7:1 to >20:1). These α,β-unsaturated carbonyl compounds were found to be more reactive than the corresponding oxoesters that are generally unreactive toward Br?nsted acid-catalyzed intramolecular oxa-conjugate additions. The product tetrahydropyrans could be transformed into various derivatives in an efficient manner, highlighting the usefulness of our methodology.
机译:α,β-不饱和羰基化合物的分子内氧杂共轭环化(IOCC)是由碱去质子化引发的,它代表了合成四氢吡喃的直接方法。然而,已知IOCC的立体化学结果取决于底物的局部结构,并且有时需要苛刻的反应条件和/或延长的反应时间以选择性地形成2,6-顺式取代的四氢吡喃。这些缺点限制了IOCC在复杂的天然产物合成中的可行性。在本文中,我们描述了在温和的反应条件下,布朗斯台德酸催化的α,β-不饱和酯替代物(例如,α,β-不饱和硫代酯,恶唑烷酮酰亚胺和吡咯酰胺)的IOCC,从而提供了一系列合成上通用的2,6-顺式取代的四氢吡喃衍生物,具有良好的立体选择性(dr从7:1到> 20:1)。发现这些α,β-不饱和羰基化合物比通常对布朗斯台德酸催化的分子内氧杂-共轭物加成没有反应性的相应含氧酸酯有更高的反应性。产品四氢吡喃类化合物可以有效地转化为各种衍生物,突出了我们方法学的有用性。

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