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New Redox Strategies in Organic Synthesis by Means of Electrochemistry and Photochemistry

机译:电化学与光化学有机合成中的新氧化还原策略

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As the breadth of radical chemistry grows, new means to promote and regulate single-electron redox activities play increasingly important roles in driving modern synthetic innovation. In this regard, photochemistry and electrochemistry—both considered as niche fields for decades—have seen an explosive renewal of interest in recent years and gradually have become a cornerstone of organic chemistry. In this Outlook article, we examine the current state-of-the-art in the areas of electrochemistry and photochemistry, as well as the nascent area of electrophotochemistry. These techniques employ external stimuli to activate organic molecules and imbue privileged control of reaction progress and selectivity that is challenging to traditional chemical methods. Thus, they provide alternative entries to known and new reactive intermediates and enable distinct synthetic strategies that were previously unimaginable. Of the many hallmarks, electro- and photochemistry are often classified as “green” technologies, promoting organic reactions under mild conditions without the necessity for potent and wasteful oxidants and reductants. This Outlook reviews the most recent growth of these fields with special emphasis on conceptual advances that have given rise to enhanced accessibility to the tools of the modern chemical trade.
机译:随着激进化学的广度,促进和规范单电子氧化还原活动的新方法在推动现代综合创新方面发挥着越来越重要的作用。在这方面,光化学和电化学 - 两人被认为是几十年的利基领域 - 近年来已经看到了爆炸性的兴趣更新,逐渐成为有机化学的基石。在这篇外观文章中,我们在电化学和光化学领域以及电力化学的新生区域检查目前的最先进。这些技术采用外部刺激来激活有机分子,令人含有对传统化学方法挑战的反应进展和选择性的植物特权控制。因此,它们提供了已知和新的反应性中间体的替代条目,并使预先难以想象的不同合成策略。在许多标志性的标志中,电气和光化学通常被归类为“绿色”技术,在温和条件下促进有机反应,而不需要有效和浪费的氧化剂和还原剂。这次展望审查了这些领域最近的增长,特别强调概念性进展,这对现代化学贸易的工具增强了增强。

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