Wang Qi, Wang Qile, Zhang Yuexiang, Mohamed Yasmine M, Pacheco Carlos, Zheng Nan, Zare Richard N, Chen Hao
Department of Chemistry & Environmental Science, New Jersey Institute of Technology Newark New Jersey 07102 USA
Department of Chemistry and Biochemistry, University of Arkansas Fayetteville Arkansas 72701 USA
Chem Sci. 2020 Nov 9;12(3):969-975. doi: 10.1039/d0sc05665k.
Although synthetic organic electrochemistry (EC) has advanced significantly, net redox neutral electrosynthesis is quite rare. Two approaches have been employed to achieve this type of electrosynthesis. One relies on turnover of the product by the reactant in a chain mechanism. The other involves both oxidation on the anode and reduction on the cathode in which the radical cation or the radical anion of the product has to migrate between two electrodes. Herein, a home-built electrochemistry/mass spectrometry (EC/MS) platform was used to generate an -cyclopropylaniline radical cation electrochemically and to monitor its reactivity toward alkenes by mass spectrometry (MS), which led to the discovery of a new redox neutral reaction of intermolecular [3 + 2] annulation of -cyclopropylanilines and alkenes to provide an aniline-substituted 5-membered carbocycle direct electrolysis (yield up to 81%). A chain mechanism, involving the regeneration of the substrate radical cation and the formation of the neutral product, is shown to be responsible for promoting such a redox neutral annulation reaction, as supported by experimental evidence of EC/MS.
尽管合成有机电化学(EC)已经取得了显著进展,但净氧化还原中性电合成却相当罕见。为实现这种类型的电合成,人们采用了两种方法。一种方法是通过链式机理使反应物实现产物的周转。另一种方法涉及阳极氧化和阴极还原,其中产物的自由基阳离子或自由基阴离子必须在两个电极之间迁移。在此,利用一个自制的电化学/质谱(EC/MS)平台,通过电化学方法生成了α-环丙基苯胺自由基阳离子,并通过质谱(MS)监测其与烯烃的反应活性,这导致发现了一种新的氧化还原中性反应,即α-环丙基苯胺与烯烃进行分子间[3 + 2]环化反应,以直接电解的方式提供苯胺取代的五元碳环(产率高达81%)。如EC/MS的实验证据所支持的那样,一种涉及底物自由基阳离子再生和中性产物形成的链式机理被证明是促进这种氧化还原中性环化反应的原因。