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Criegee Intermediates Beyond Ozonolysis: Synthetic and Mechanistic Insights

机译:超越臭氧溶解的中间体:综合和机械洞察力

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摘要

After more than 70 years since their discovery, Criegee intermediates (CIs) are back at the forefront of modern chemistry of short-lived reactive intermediates. They play an important role in the mechanistic context of chemical synthesis, total synthesis, pharmaceuticals, and, most importantly, climate-controlling aerosol formation as well as atmospheric chemistry. This Minireview summarizes key aspects of CIs (from the mechanism of formation, for example, by ozonolysis of alkenes and photolysis methods employing diiodo and diazo compounds, to their electronic structures and chemical reactivity), highlights the most recent findings and some landmark results of gas-phase kinetics, and detection/measurements. The recent progress in synthetic and mechanistic studies in the chemistry of CIs provides a guide to illustrate the possibilities for further investigations in this exciting field.
机译:在发现70多年后,Criegee中间体(CIs)又回到了短寿命反应性中间体的现代化学前沿。它们在化学合成、全合成、制药、最重要的是气候控制气溶胶形成以及大气化学的机械环境中发挥着重要作用。本小综述总结了顺式反应的关键方面(从形成机理,例如烯烃的臭氧分解和使用二碘和重氮化合物的光解方法,到它们的电子结构和化学反应性),重点介绍了气相动力学的最新发现和一些里程碑式的结果,以及检测/测量。CIs化学合成和机理研究的最新进展为阐明在这一激动人心的领域进行进一步研究的可能性提供了指南。

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