化学
光催化
环己酮
脱氢
催化作用
叔胺
阳离子聚合
组合化学
光催化
光化学
胺气处理
有机化学
共价键
烷基化
有机合成
原子转移自由基聚合
有机催化
结合
化学合成
超分子组装
一锅法合成
高分子化学
多相催化
作者
Ang Li,T. Zhang,De-Liang Long,Sheng-Li Huang,Ge Yang
标识
DOI:10.1021/acssuschemeng.6c00385
摘要
Functional tertiary amines play a critical role in the synthesis of key building blocks for agrochemicals and pharmaceuticals, driving demand for direct and versatile methods for producing them from common feedstocks like olefins and amines. Despite their significance, efficient coupling reactions for their synthesis remain scarce. Here, we present a novel photocatalytic system featuring a covalently linked cobaloxime–polyoxometalate (Co-POM) catalyst electrostatically paired with cationic photosensitizers. This assembly enables efficient and site-selective synthesis of tertiary amines via photoredox-generated aminium radical cations, promoting effective charge separation and transfer. Notably, when using cyclohexanone derivatives, subsequent dehydration and dehydrogenation steps lead to aromatic amine formation. Mechanistic insights from ultrafast transient absorption, EPR, and time-resolved fluorescence spectroscopy underscore the system’s enhanced catalytic activity and demonstrate the promise of metal catalyst-linked POMs for advanced photocatalytic synthesis.
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