adjacent carbons. However, when the reaction was carried out under irradiation using a low-pressure Hg lamp, addition/reduction products were obtained in good yield. Hydrogen bromide, formed by H-abstraction of a bromine radical from alkenes, is likely to play a key role in the reductive ATR reaction.
烯烃与R–X的原子转移自由基(ATR)反应通常会产生在相邻碳原子上具有新的C–C和C–X键的产物。但是,当使用低压
汞灯在辐射下进行反应时,以高收率获得添加/还原产物。通过从烯烃中H吸收
溴自由基形成的
溴化氢可能在还原性ATR反应中起关键作用。