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首页> 外文期刊>Angewandte Chemie >Divergent Control of Point and Axial Stereogenicity: Catalytic Enantioselective C-N Bond-Forming Cross-Coupling and Catalyst-Controlled Atroposelective Cyclodehydration
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Divergent Control of Point and Axial Stereogenicity: Catalytic Enantioselective C-N Bond-Forming Cross-Coupling and Catalyst-Controlled Atroposelective Cyclodehydration

机译:点和轴向实体发生的发散控制:催化对映选择性C-N键合成形的交叉偶联和催化剂控制的AsroposEctive环氢化物

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摘要

Catalyst control over reactions that produce multiple stereoisomers is a challenge in synthesis. Control over reactions that involve stereogenic elements remote from one another is particularly uncommon. Additionally, catalytic reactions that address both stereogenic carbon centers and an element of axial chirality are also rare. Reported herein is a catalytic approach to each stereoisomer of a scaffold containing a stereogenic center remote from an axis of chirality. Newly developed peptidyl copper complexes catalyze an unprecedented remote desymmetrization involving enantioselective C-N bond-forming cross-coupling. Then, chiral phosphoric acid catalysts set an axis of chirality through an unprecedented atroposelective cyclodehydration to form a heterocycle with high diastereoselectivity. The application of chiral copper complexes and phosphoric acids provides access to each stereoisomer of a framework with two different elements of stereogenicity.
机译:催化剂对产生多种立体异构体的反应进行控制是合成中的挑战。 对涉及远离彼此的立体元件的反应进行控制特别罕见。 另外,解决整个碳中心和轴向肾性元素的催化反应也是罕见的。 本文报道的是含有远离手性轴的立体中心的支架的每个立体异构体的催化方法。 新开发的肽基铜配合物催化前所未有的远程脱差异,涉及对映选择性的C-N键合成形的交叉偶联。 然后,手性磷酸催化剂通过前所未有的AtroposeCelective环氢化水合物设定一种手性轴,以形成具有高非对映选择性的杂环。 手性铜络合物和磷酸的施用提供了对具有两种不同的实体性元素的框架的每个立体异构体的访问。

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