化学
甲烷氧化偶联
酚类
苯酚
氧化磷酸化
催化作用
光催化
同种类的
硼
组合化学
猝灭(荧光)
光化学
均相催化
联轴节(管道)
多相催化
选择性
有机化学
转化(遗传学)
反应条件
氧化损伤
作者
Jingze Wu,Yasutoshi Koga,Gang Hong,Madeline E. Rotella,Marisa C. Kozlowski
摘要
Phenol overoxidation has severely hindered the advancement and synthetic utility of oxidative phenol coupling for over two decades, preventing the development of general catalytic methods. Electron-deficient phenols resist selective coupling due to their high oxidation potential, while monosubstituted phenols undergo uncontrolled overoxidation, making their selective transformation highly challenging. We present a strategy that harnesses in situ biphenol-boron complexation to suppress overoxidation, unlocking the selective catalytic oxidative coupling of both electron-deficient and monosubstituted phenols. This method is broadly applicable to both heterogeneous and homogeneous photocatalytic systems, each operating via distinct mechanisms. By overcoming a fundamental barrier in oxidative phenol coupling, this work not only redefines the scope of catalytic oxidative transformations but also paves the way for new advances in oxidative couplings with implications in pharmaceuticals and materials science.
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