磺酸盐的电化学制备与转化

IF 3.5 4区 化学 Q2 ELECTROCHEMISTRY
Takuya Michiyuki, Lutz Ackermann
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引用次数: 0

摘要

磺胺盐是典型的台架稳定和容易获得的试剂,具有多种化学反应活性。由于这些有合成价值的特性,在过去的几十年中,磺酸盐化学有了相当大的发展势头。特别是,磺化试剂和电合成的合并使得电流的利用取代了成本高且危险的化学氧化还原剂,从而最大限度地发挥了磺化盐的吸引力。此外,电化学使化学家能够调节所需的氧化还原电位,提供选择性地接近目标产物,否则通过热或光化学歧管是无法获得的。电化学的这些优点导致了磺酸盐化学的重大进展。因此,我们在此概述了到2024年12月为止,与磺酸盐相关的有机电合成的早期开创性发现和最新进展,旨在刺激这一快速发展领域的未来进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Electrochemical Preparation and Transformation of Sulfonium Salts

Electrochemical Preparation and Transformation of Sulfonium Salts

Sulfonium salts are typically bench-stable and readily available reagents that showcase diverse chemical reactivities. Owing to these synthetically valuable features, sulfonium salt chemistry has witnessed considerable momentum over the past decades. Particularly, the merger of sulfonium reagents and electrosynthesis enabled the utilization of electric current in place of cost-intensive and hazardous chemical redox agents to maximize the attractive characteristics of sulfonium salts. Additionally, electrochemistry has allowed chemists to dial in the desired redox potential, offering selective access to target products that are otherwise unattainable by either thermal or photochemical manifolds. These advantages of electrochemistry led to major advances in sulfonium salt chemistry. Thus, we, herein, provide an overview of early pioneering findings and recent progress devoted to organic electrosynthesis associated with sulfonium salts until December 2024, aiming to stimulate future progress in this rapidly evolving arena.

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来源期刊
ChemElectroChem
ChemElectroChem ELECTROCHEMISTRY-
CiteScore
7.90
自引率
2.50%
发文量
515
审稿时长
1.2 months
期刊介绍: ChemElectroChem is aimed to become a top-ranking electrochemistry journal for primary research papers and critical secondary information from authors across the world. The journal covers the entire scope of pure and applied electrochemistry, the latter encompassing (among others) energy applications, electrochemistry at interfaces (including surfaces), photoelectrochemistry and bioelectrochemistry.
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