Overcoming the Potential Window-Limited Functional Group Compatibility by Alternating Current Electrolysis

IF 14.4 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY Journal of the American Chemical Society Pub Date : 2023-09-25 DOI:10.1021/jacs.3c05802
Sachini Rodrigo, Atanu Hazra, Jyoti P. Mahajan, Hien M. Nguyen* and Long Luo*, 
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引用次数: 1

Abstract

The functional group compatibility of an electrosynthetic method is typically limited by its potential reaction window. Here, we report that alternating current (AC) electrolysis can overcome such potential window-limited functional group compatibility. Using alkene heterodifunctionalization as a model system, we design and demonstrate a series of AC-driven reactions that add two functional groups sequentially and separately under the cathodic and anodic pulses, including chloro- and bromotrilfuoromethylation as well as chlorosulfonylation. We discovered that the oscillating redox environment during AC electrolysis allows the regeneration of the redox-active functional groups after their oxidation or reduction in the preceding step. As a result, even though redox labile functional groups such as pyrrole, quinone, and aryl thioether fall in the reaction potential window, they are tolerated under AC electrolysis conditions, leading to synthetically useful yields. The cyclic voltammetric study has confirmed that the product yield is limited by the extent of starting material regeneration during the redox cycling. Our findings open a new avenue for improving functional group compatibility in electrosynthesis and show the possibility of predicting the product yield under AC electrolysis from voltammogram features.

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交流电解克服电势窗口限制的官能团相容性。
电合成方法的官能团相容性通常受到其潜在反应窗口的限制。在这里,我们报道了交流(AC)电解可以克服这种电位窗限制的官能团兼容性。以烯烃异二官能化为模型系统,我们设计并演示了一系列交流驱动的反应,这些反应在阴极和阳极脉冲下依次和分别添加两个官能团,包括氯和溴三氟甲基化以及氯磺酰化。我们发现,交流电解过程中的振荡氧化还原环境允许氧化还原活性官能团在前一步骤中氧化或还原后再生。因此,即使氧化还原不稳定的官能团如吡咯、醌和芳基硫醚落入反应电位窗口,它们在交流电解条件下也是可耐受的,从而产生合成有用的产率。循环伏安研究已经证实,在氧化还原循环过程中,产物产率受到起始材料再生程度的限制。我们的发现为改善电合成中的官能团相容性开辟了一条新途径,并显示了从伏安图特征预测交流电解下产物产率的可能性。
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来源期刊
CiteScore
24.40
自引率
6.00%
发文量
2398
审稿时长
1.6 months
期刊介绍: The flagship journal of the American Chemical Society, known as the Journal of the American Chemical Society (JACS), has been a prestigious publication since its establishment in 1879. It holds a preeminent position in the field of chemistry and related interdisciplinary sciences. JACS is committed to disseminating cutting-edge research papers, covering a wide range of topics, and encompasses approximately 19,000 pages of Articles, Communications, and Perspectives annually. With a weekly publication frequency, JACS plays a vital role in advancing the field of chemistry by providing essential research.
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