萘与芳酰氟和苯乙烯的序贯C-H芳酰化和正构[4 + 2]环加成反应

IF 13.1 1区 化学 Q1 CHEMISTRY, PHYSICAL
Bao-Gui Cai, Constantin G. Daniliuc and Armido Studer*, 
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引用次数: 0

摘要

虽然单电子转移(SET)和能量转移(EnT)过程都对光化学催化做出了重大贡献,但它们在SET - EnT序列中的组合仍未得到充分探索。在这里,我们报道了一种顺序激活策略,该策略将SET和EnT催化结合起来,通过顺序C-H活化和[4 + 2]环加成来实现萘衍生物的脱芳化,从而实现桥接多环框架的高效构建。该方法的关键是set介导的nhc催化萘环的预官能化,它调节了萘环的三重态能量,从而促进了选择性的烯驱动环加成。这种策略提供了对反应性的精确控制,扩大了可见光介导催化的范围,并为从简单前体合成复杂的三维(3D)分子结构提供了一个强大的平台。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Sequential C–H Aroylation and Formal [4 + 2] Cycloaddition of Naphthalenes with Aroylfluorides and Styrenes

Sequential C–H Aroylation and Formal [4 + 2] Cycloaddition of Naphthalenes with Aroylfluorides and Styrenes

While single-electron transfer (SET) and energy transfer (EnT) processes have each made significant contributions to photochemical catalysis, their combination in an SET–EnT sequence remains underexplored. Here, we report a sequential activation strategy that merges SET and EnT catalysis to achieve the dearomatization of naphthalene derivatives through sequential C–H activation and [4 + 2] cycloaddition, enabling the efficient construction of bridged polycyclic frameworks. Key to this approach is an SET-mediated, NHC-catalyzed prefunctionalization of the naphthalene ring, which modulates its triplet energy, thereby facilitating selective EnT-driven cycloaddition with alkenes. This strategy provides precise control over reactivity, expands the scope of visible-light-mediated catalysis, and offers a robust platform for the synthesis of complex three dimensional (3D) molecular architectures from simple precursors.

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来源期刊
ACS Catalysis
ACS Catalysis CHEMISTRY, PHYSICAL-
CiteScore
20.80
自引率
6.20%
发文量
1253
审稿时长
1.5 months
期刊介绍: ACS Catalysis is an esteemed journal that publishes original research in the fields of heterogeneous catalysis, molecular catalysis, and biocatalysis. It offers broad coverage across diverse areas such as life sciences, organometallics and synthesis, photochemistry and electrochemistry, drug discovery and synthesis, materials science, environmental protection, polymer discovery and synthesis, and energy and fuels. The scope of the journal is to showcase innovative work in various aspects of catalysis. This includes new reactions and novel synthetic approaches utilizing known catalysts, the discovery or modification of new catalysts, elucidation of catalytic mechanisms through cutting-edge investigations, practical enhancements of existing processes, as well as conceptual advances in the field. Contributions to ACS Catalysis can encompass both experimental and theoretical research focused on catalytic molecules, macromolecules, and materials that exhibit catalytic turnover.
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