均分解
化学
催化作用
铜
叠氮化物
激进的
光化学
配体(生物化学)
光催化
铱
钌
化学计量学
可见光谱
高分子化学
有机化学
材料科学
受体
光电子学
生物化学
作者
Asik Hossain,Adiyala Vidyasagar,Christian Eichinger,Christian Lankes,Jenny Phan,Julia Rehbein,Oliver Reiser
标识
DOI:10.1002/anie.201801678
摘要
Abstract The visible‐light‐accelerated oxo‐azidation of vinyl arenes with trimethylsilylazide and molecular oxygen as stoichiometric oxidant was achieved. In contrast to photocatalysts based on iridium, ruthenium, or organic dyes, [Cu(dap) 2 ]Cl or [Cu(dap)Cl 2 ] were found to be unique for this transformation, which is attributed to their ability to interact with the substrates through ligand exchange and rebound mechanisms. Cu II is proposed as the catalytically active species, which upon coordinating azide will undergo light‐accelerated homolysis to form Cu I and azide radicals. This activation principle (Cu II ‐X→Cu I +X . ) opens up new avenues for copper‐based photocatalysis.
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