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Frustrated Radical Pairs: Insights from EPR Spectroscopy

机译:令人沮丧的激进对:epr光谱的见解

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摘要

Progress in frustrated Lewis pair (FLP) chemistry has revealed the importance of the main group elements in catalysis, opening new avenues in synthetic chemistry. Recently, new reactivities of frustrated Lewis pairs have been uncovered that disclose that certain combinations of Lewis acids and bases undergo single-electron transfer (SET) processes. Here an electron can be transferred from the Lewis basic donor to a Lewis acidic acceptor to generate a reactive frustrated radical pair (FRP). This minireview aims to showcase the recent advancements in this emerging field covering the synthesis and reactivities of frustrated radical pairs, with extensive highlights of the results from Electron Paramagnetic Resonance (EPR) spectroscopy to explain the nature and stability of the different radical species observed.
机译:受阻刘易斯对(FLP)化学的进展揭示了主要基团元素在催化中的重要性,为合成化学开辟了新途径。最近,人们发现了受阻路易斯对的新反应性,揭示了路易斯酸和碱的某些组合经历了单电子转移(SET)过程。在这里,电子可以从路易斯碱性供体转移到路易斯酸性受体,从而产生反应性受阻自由基对(FRP)。本小综述旨在展示这一新兴领域的最新进展,包括受阻自由基对的合成和反应性,并广泛强调电子顺磁共振(EPR)光谱的结果,以解释观察到的不同自由基物种的性质和稳定性。

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