Dong Junchao, Liang Yujie, Li Yang, Guan Wei, Zhang Qian, Fu Junkai
Jilin Province Key Laboratory of Organic Functional Molecular Design & Synthesis and Institute of Functional Material Chemistry, Department of Chemistry, Northeast Normal University, Changchun, 130024, P. R. China.
Institute of Functional Material Chemistry, Department of Chemistry, Northeast Normal University, Changchun, 130024, P. R. China.
Adv Sci (Weinh). 2024 Mar;11(12):e2305006. doi: 10.1002/advs.202305006. Epub 2024 Jan 16.
We present herein a copper-catalyzed three-component aminofluorination of unactivated alkenes with N-bromodialkylamines and readily available nucleophilic fluoride under the assistance of a bidentate auxiliary. This protocol exhibits excellent functional group tolerance toward a wide range of unactivated alkenes and N-bromodialkylamines to furnish the corresponding β-fluoroalkylamines in a highly regio- and diastereoselective manner. The appropriate choice of nucleophilic fluoro source is essential to make this reaction a reality. Further DFT calculations show that the exothermic ion exchange between external fluoride ion and Cu(II) intermediate provides additional driving force to the irreversible migratory insertion, which offsets the unfavorable reaction energetics associated with the subsequent C(sp)-F reductive elimination. This finding offers a new avenue to catalytic intermolecular aminofluorination of unactivated alkenes with electron-rich amino sources via a remarkable reductive elimination of Cu(III) species to forge the C(sp)-F bonds.
我们在此展示了一种在双齿助剂辅助下,铜催化未活化烯烃与N-溴代二烷基胺及易于获得的亲核氟化物进行的三组分氨基氟化反应。该方案对多种未活化烯烃和N-溴代二烷基胺表现出优异的官能团耐受性,能够以高度区域和非对映选择性的方式提供相应的β-氟代烷基胺。亲核氟源的恰当选择对于实现该反应至关重要。进一步的密度泛函理论计算表明,外部氟离子与Cu(II)中间体之间的放热离子交换为不可逆的迁移插入提供了额外的驱动力,这抵消了与随后的C(sp)-F还原消除相关的不利反应能量学。这一发现为通过显著还原消除Cu(III)物种以形成C(sp)-F键,实现未活化烯烃与富电子氨基源的催化分子间氨基氟化反应提供了一条新途径。