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首页> 外文期刊>Angewandte Chemie >Microtubing-Reactor-Assisted Aliphatic C-H Functionalization with HCl as a Hydrogen-Atom-Transfer Catalyst Precursor in Conjunction with an Organic Photoredox Catalyst
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Microtubing-Reactor-Assisted Aliphatic C-H Functionalization with HCl as a Hydrogen-Atom-Transfer Catalyst Precursor in Conjunction with an Organic Photoredox Catalyst

机译:微管反应器辅助脂族C-H官能化与HCL作为氢原子转移催化剂前体,与有机光致毒剂催化剂结合

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摘要

Chlorine radical, which is classically generated by the homolysis of Cl-2 under UV irradiation, can abstract a hydrogen atom from an unactivated C(sp(3))-H bond. We herein demonstrate the use of HCl as an effective hydrogen-atom-transfer catalyst precursor activated by an organic acridinium photoredox catalyst under visible-light irradiation for C-H alkylation and allylation. The key to success relied on the utilization of microtubing reactors to maintain the volatile HCl catalyst. This photomediated chlorine-based C-H activation protocol is effective for a variety of unactivated C(sp(3))-H bond patterns, even with primary C(sp(3))-H bonds, as in ethane. The merit of this strategy is illustrated by rapid access to several pharmaceutical drugs from abundant unfunctionalized alkane feedstocks.
机译:通过UV辐射在Cl-2的均匀沉积的氯自由基,可以摘要来自未激活的C的氢原子(SP(3)) - H键。 我们在此证明了HCl在可见光照射下用有机吖啶光毒剂激活的有效氢原子转移催化剂前体,用于C-H烷基化和烯化。 成功的关键依赖于利用微管反应器以维持挥发性HCl催化剂。 这种基于光脱氯的C-H活化方案对于各种未致死的C(SP(3)) - H键样模式是有效的,即使用初级C(SP(3))-H键,如乙烷中的粘合剂。 通过快速进入来自丰富的未官能化烷烃原料的几种药物来说明该策略的优点。

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