Reidell Alexander C, Pazder Kristen E, LeBarron Christopher T, Stewart Skylar A, Hosseini Seyyedamirhossein
Department of Chemistry and Biochemistry, University of South Carolina, Columbia, South Carolina 29208, United States.
ACS Org Inorg Au. 2024 Oct 2;4(6):579-603. doi: 10.1021/acsorginorgau.4c00050. eCollection 2024 Dec 4.
Organic electrosynthesis has gained much attention over the last few decades as a promising alternative to traditional synthesis methods. Electrochemical approaches offer numerous advantages over traditional organic synthesis procedures. One of the most interesting aspects of electroorganic synthesis is the ability to tune many parameters to affect the outcome of the reaction of interest. One such parameter is the composition of the working electrode. By changing the electrode material, one can influence the selectivity, product distribution, and rate of organic reactions. In this Review, we describe several electrode materials and modifications with applications in organic electrosynthetic transformations. Included in this discussion are modifications of electrodes with nanoparticles, composite materials, polymers, organic frameworks, and surface-bound mediators. We first discuss the important physicochemical and electrochemical properties of each material. Then, we briefly summarize several relevant examples of each class of electrodes, with the goal of providing readers with a catalog of electrode materials for a wide variety of organic syntheses.
在过去几十年中,有机电合成作为传统合成方法的一种有前景的替代方法受到了广泛关注。与传统有机合成方法相比,电化学方法具有许多优势。有机电合成最有趣的方面之一是能够调节许多参数以影响目标反应的结果。其中一个参数是工作电极的组成。通过改变电极材料,可以影响有机反应的选择性、产物分布和速率。在本综述中,我们描述了几种在有机电合成转化中具有应用的电极材料及其改性。本讨论包括用纳米颗粒、复合材料、聚合物、有机框架和表面结合介质对电极进行的改性。我们首先讨论每种材料的重要物理化学和电化学性质。然后,我们简要总结每类电极的几个相关实例,目的是为读者提供用于各种有机合成的电极材料目录。