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通过电场催化的亲电芳香取代反应,对环对苯撑中非极性 C(sp)‒C(sp)键的断裂。

Cleavage of non-polar C(sp)‒C(sp) bonds in cycloparaphenylenes via electric field-catalyzed electrophilic aromatic substitution.

机构信息

Beijing National Laboratory for Molecular Sciences, CAS Key Laboratory of Organic Solids, Institute of Chemistry, Chinese Academy of Sciences, Beijing, 100190, China.

University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Nat Commun. 2023 Jan 18;14(1):293. doi: 10.1038/s41467-022-35686-4.

Abstract

Electrophilic aromatic substitution (EAS) is one of the most fundamental reactions in organic chemistry. Using an oriented external electric field (OEEF) instead of traditional reagents to tune the EAS reactivity can offer an environmentally friendly method to synthesize aromatic compounds and hold the promise of broadening its scope. Despite these advantages, OEEF catalysis of EAS is difficult to realize, due to the challenge of microscopically orienting OEEF along the direction of electron reorganizations. In this work, we demonstrate OEEF-catalyzed EAS reactions in a series of cycloparaphenylenes (CPPs) using the scanning tunneling microscope break junction (STM-BJ) technique. Crucially, the unique radial π-conjugation of CPPs enables a desired alignment for the OEEF to catalyze the EAS with Au STM tip (or substrate) acting as an electrophile. Under mild conditions, the OEEF-catalyzed EAS reactions can cleave the inherently inert C(sp)-C(sp) bond, leading to high-yield (~97%) formation of linear oligophenylenes terminated with covalent Au-C bonds. These results not only demonstrate the feasibility of OEEF catalysis of EAS, but also offer a way of exploring new mechanistic principles of classic organic reactions aided by OEEF.

摘要

亲电芳香取代反应(EAS)是有机化学中最基本的反应之一。使用定向外部电场(OEEF)代替传统试剂来调节 EAS 反应性,可以提供一种环保的方法来合成芳香族化合物,并有望扩大其应用范围。尽管具有这些优势,但由于难以在微观上沿着电子重排的方向定向 OEEF,因此 OEEF 催化的 EAS 反应很难实现。在这项工作中,我们使用扫描隧道显微镜断键(STM-BJ)技术在一系列环对苯撑(CPP)中证明了 OEEF 催化的 EAS 反应。至关重要的是,CPP 的独特的径向π共轭结构使得 OEEF 能够以所需的方式排列,从而可以使用金 STM 尖端(或基底)作为亲电试剂来催化 EAS。在温和的条件下,OEEF 催化的 EAS 反应可以切断固有的惰性 C(sp)-C(sp)键,从而以高收率(~97%)形成末端带有共价 Au-C 键的线性寡聚苯。这些结果不仅证明了 OEEF 催化 EAS 的可行性,而且还提供了一种通过 OEEF 探索经典有机反应新的机理原则的方法。

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