Suppr超能文献

基于 Indane 的手性芳基硫属元素催化剂:在手性亲电反应中的发展与应用。

Indane-Based Chiral Aryl Chalcogenide Catalysts: Development and Applications in Asymmetric Electrophilic Reactions.

机构信息

Institute of Organic Chemistry & MOE Key Laboratory of Bioinorganic and Synthetic Chemistry, School of Chemistry, Sun Yat-Sen University, Guangzhou 510006, P. R. China.

出版信息

Acc Chem Res. 2022 Sep 6;55(17):2439-2453. doi: 10.1021/acs.accounts.2c00201. Epub 2022 Aug 25.

Abstract

Asymmetric electrophilic reactions provide an ideal method for the construction of chiral molecules by incorporating one or more functional groups into the parent substrates under mild conditions. However, due to the issues of the reactivities of electrophilic species and the possible racemization of chiral intermediates as well as the restriction of the chiral scaffolds of chiral catalysts, many limitations remain in this field, such as the narrow scopes of substrates and electrophiles as well as the limited types of nucleophiles and reactions. To overcome the limitations in the synthesis of diversified chiral molecules, we developed a series of indane-based chiral amino aryl chalcogenide catalysts. These catalysts are easily prepared based on the privileged chiral indane scaffold. They can provide an appropriate H-bonding effect by varying the amino protecting groups as well as offer a proper Lewis basicity and steric hindrance by adjusting different substituents on the aryl chalcogenide motifs. These features allow for them to meet the requirements of reactivity and the chiral environment of the reactions. Notably, they have been successfully applied to various asymmetric electrophilic reactions of alkenes, alkynes, and arenes, expanding the field of electrophilic reactions.Using these catalysts, we realized the enantioselective CFS-lactonization of olefinic carboxylic acids, enantioselective CFS-aminocyclization of olefinic sulfonamides, desymmetrizing enantioselective CFS-carbocyclization of -diaryl-tethered alkenes, enantioselective CFS-oxycyclization of -allylamides, enantioselective intermolecular trifluoromethylthiolating difunctionalization and allylic C-H trifluoromethylthiolation of trisubstituted alkenes, formally the intermolecular CFS-oxyfunctionalization of aliphatic internal alkenes, intermolecular azidothiolation, oxythiolation, thioarylation of -allyl sulfonamides, desymmetrizing enantioselective chlorocarbocyclization of aryl-tethered diolefins, enantioselective Friedel-Crafts-type electrophilic chlorination of -allyl anilides, and enantioselective chlorocarbocyclization and dearomatization of -allyl 1-naphthanilides. Additionally, the enantioselective electrophilic carbothiolation of alkynes to construct enantiopure carbon chirality center-containing molecules and axially chiral amino sulfide vinyl arenes and the electrophilic aromatic halogenation to produce P-chirogenic compounds can be accomplished. In these reactions, a bifunctional binding mode is proposed in the catalytic cycles, in which an acid-derived anion-binding interaction might exist and account for the high enantioselectivities of the reactions.In this Account, we demonstrate our achievements in asymmetric electrophilic reactions and share our thoughts on catalyst design, our understanding of asymmetric electrophilic reactions, and our perspectives in the field of chiral chalcogenide-catalyzed asymmetric electrophilic reactions. We hope that the experience we share will promote the design and development of other novel organocatalysts and new challenging reactions.

摘要

不对称亲电反应为在温和条件下将一个或多个官能团引入母体底物中构建手性分子提供了一种理想的方法。然而,由于亲电物种的反应性以及手性中间体可能外消旋和手性催化剂的手性支架的限制等问题,该领域仍然存在许多限制,例如底物和亲电试剂的范围狭窄以及亲核试剂和反应的类型有限。为了克服在手性分子多样性合成方面的局限性,我们开发了一系列基于茚的手性氨基芳基硫属元素催化剂。这些催化剂可基于优势手性茚支架轻松制备。通过改变氨基保护基,它们可以提供适当的氢键效应,通过调整芳基硫属元素模体上的不同取代基,它们可以提供适当的路易斯碱性和亲脂性。这些特征使它们能够满足反应的反应性和手性环境的要求。值得注意的是,它们已成功应用于各种烯烃、炔烃和芳族亲电反应的不对称性,扩展了亲电反应领域。

使用这些催化剂,我们实现了烯烃羧酸的对映选择性 CFS-内酯化、烯烃磺酰胺的对映选择性 CFS-氨基环化、二芳基键合烯烃的不对称去对称 CFS-碳环化、-烯丙基酰胺的对映选择性 CFS-氧环化、三取代烯烃的对映选择性分子间三氟甲硫基化双官能化和烯丙基 C-H 三氟甲硫基化、脂肪族内部烯烃的分子间 CFS-氧基官能化、分子间叠氮硫醇化、氧硫醇化、硫芳基化-烯丙基磺酰胺、芳基键合二烯烃的不对称氯环化、-烯丙基苯胺的对映选择性 Friedel-Crafts 型亲电氯化以及-烯丙基 1-萘基酰胺的对映选择性氯碳环化和去芳构化。此外,还可以完成炔烃的对映选择性亲电碳硫醇化以构建对映纯碳手性中心含分子和轴向手性氨基硫代乙烯芳基以及亲电芳香族卤化以生成 P-手性化合物。在这些反应中,催化循环中提出了双功能结合模式,其中可能存在酸衍生的阴离子结合相互作用,并解释了反应的高对映选择性。

在本报告中,我们展示了我们在不对称亲电反应方面的成就,并分享了我们对手性催化剂设计、对手性亲电反应的理解以及在手性硫属元素催化的不对称亲电反应领域的观点。我们希望我们分享的经验将促进其他新型有机催化剂的设计和开发以及新的挑战性反应。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验