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Functionalised Oximes: Emergent Precursors for Carbon- Nitrogen- and Oxygen-Centred Radicals

机译:功能化的肟:碳氮和氧中心自由基的新兴前体

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摘要

Oxime derivatives are easily made, are non-hazardous and have long shelf lives. They contain weak N–O bonds that undergo homolytic scission, on appropriate thermal or photochemical stimulus, to initially release a pair of N- and O-centred radicals. This article reviews the use of these precursors for studying the structures, reactions and kinetics of the released radicals. Two classes have been exploited for radical generation; one comprises carbonyl oximes, principally oxime esters and amides, and the second comprises oxime ethers. Both classes release an iminyl radical together with an equal amount of a second oxygen-centred radical. The O-centred radicals derived from carbonyl oximes decarboxylate giving access to a variety of carbon-centred and nitrogen-centred species. Methods developed for homolytically dissociating the oxime derivatives include UV irradiation, conventional thermal and microwave heating. Photoredox catalytic methods succeed well with specially functionalised oximes and this aspect is also reviewed. Attention is also drawn to the key contributions made by EPR spectroscopy, aided by DFT computations, in elucidating the structures and dynamics of the transient intermediates.
机译:肟衍生物易于制备,无害且具有长的保存期限。它们包含弱的N-O键,在适当的热或光化学刺激下,该键经过均相断裂,最初释放一对以N和O为中心的自由基。本文回顾了这些前体在研究释放的自由基的结构,反应和动力学方面的用途。已经开发出两类来产生激进分子。一种包含羰基肟,主要是肟酯和酰胺,第二种包含肟醚。这两类都释放亚胺基和等量的第二个以氧为中心的基团。衍生自羰基肟的O中心自由基会脱羧,从而可接触各种以碳为中心和以N为中心的物质。为使肟衍生物均质离解而开发的方法包括紫外线辐射,常规热法和微波加热。光氧化还原催化方法可成功用于特殊功能的肟,这一方面也得到了综述。在阐明瞬态中间体的结构和动力学方面,还应注意EPR光谱学在DFT计算的帮助下做出的关键贡献。

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