化学
碘化物
催化作用
激进的
光化学
烯烃纤维
密度泛函理论
三苯基膦
功能群
氯化物
卤化
反应中间体
反应机理
原子转移自由基聚合
电子转移
亲核酰基取代反应
自由基环化
铑
酰氯
烯丙基重排
还原消去
酰基
均相催化
光催化
药物化学
溴化物
作者
Andrew G. Durant,P. V. Samokhin,Han Yao,Mark S. Taylor,Mark Lautens
标识
DOI:10.1021/acscatal.5c09091
摘要
A phosphine-catalyzed acyl iodination of tethered olefins is reported. Acid chlorides with a tethered olefin undergo an atom transfer radical cyclization reaction when subjected to magnesium iodide and catalytic triphenylphosphine under blue-light irradiation. Mechanistic studies support the activation of the acid chloride via the in situ formation of an acyl iodide allowing for the formation of an electron donor–acceptor (EDA) complex with PPh3. Density functional theory calculations support a side-on EDA complex between the aforementioned acyl iodide and triphenylphosphine. Upon irradiation, this complex generates an acyl radical, detected by EPR, and a Ph3P-I• radical. Subsequent radical cyclization and XAT generate iodinated products. The reaction tolerates a variety of functional groups and heterocycles, providing chromanone, dihydroquinolinone, thiochromanone, and dihydronaphthlenone products in moderate to high yield.
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