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Photoredox catalysis with aryl sulfonium salts enables site-selective late-stage fluorination

机译:用芳基锍盐催化的摄影氧催化使现场选择性的晚期氟化

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摘要

Photoredox catalysis, especially in combination with transition metal catalysis, can produce redox states of transition metal catalysts to facilitate challenging bond formations that are not readily accessible in conventional redox catalysis. For arene functionalization, metallophotoredox catalysis has successfully made use of the same leaving groups as those valuable in conventional cross-coupling catalysis, such as bromide. Yet the redox potentials of common photoredox catalysts are not sufficient to reduce most aryl bromides, so synthetically useful aryl radicals are often not directly available. Therefore, the development of a distinct leaving group more appropriately matched in redox potential could enable new reactivity manifolds for metallophotoredox catalysis, especially if arylcopper(iii) complexes are accessible, from which the most challenging bond-forming reactions can occur. Here we show the conceptual advantages of aryl thianthrenium salts for metallophotoredox catalysis, and their utility in site-selective late-stage aromatic fluorination.
机译:Photoredox催乳剂,特别是与过渡金属催化剂组合,可以产生过渡金属催化剂的氧化还原态,以促进常规氧化还原催化中不易获得的挑战粘合形成。对于芳烃官能化,金属化鲁钝的催化成功地使用了与常规交叉偶联催化剂中有价值的离子组,例如溴化物。然而,常见的光子催化剂的氧化还原电位不足以减少大多数芳基溴,因此合成有用的芳基通常不可用。因此,在氧化还原电位中更适当地匹配的不同离子组的发展可以使新的反应性歧管用于金属反载体催化,特别是如果可以获得芳基(III)络合物,可以发生最具挑战性的结合反应。在这里,我们展示了芳基天性盐的概念优势,用于金属化毒剂催化,以及它们在现场选择性晚期芳族氟化的实用性。

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