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Photoinduced 1,2-dicarbofunctionalization of alkenes with organotrifluoroborate nucleophiles via radical/polar crossover
被引:54
作者:
Jesus Cabrera-Afonso, Maria
[1
]
Sookezian, Anasheh
[1
]
Badir, Shorouk O.
[1
]
El Khatib, Mirna
[2
]
Molander, Gary A.
[1
]
机构:
[1] Univ Penn, Dept Chem, Roy & Diana Vagelos Labs, 231 South 34th St, Philadelphia, PA 19104 USA
[2] Univ Penn, Perelman Sch Med, Dept Biochem & Biophys, Stellar Chance Bldg,422 Curie Blvd, Philadelphia, PA 19104 USA
关键词:
CATALYZED REDUCTIVE ALLYLATION;
BOND-FORMING REACTIONS;
REDOX-ACTIVE ESTERS;
COUPLING REACTIONS;
ALKYL-HALIDES;
ELECTROCATALYTIC APPROACH;
UNACTIVATED OLEFINS;
CONCISE SYNTHESIS;
ONE-POT;
NICKEL;
D O I:
10.1039/d1sc02547c
中图分类号:
O6 [化学];
学科分类号:
0703 ;
摘要:
Alkene 1,2-dicarbofunctionalizations are highly sought-after transformations as they enable a rapid increase of molecular complexity in one synthetic step. Traditionally, these conjunctive couplings proceed through the intermediacy of alkylmetal species susceptible to deleterious pathways including beta-hydride elimination and protodemetalation. Herein, an intermolecular 1,2-dicarbofunctionalization using alkyl N-(acyloxy)phthalimide redox-active esters as radical progenitors and organotrifluoroborates as carbon-centered nucleophiles is reported. This redox-neutral, multicomponent reaction is postulated to proceed through photochemical radical/polar crossover to afford a key carbocation species that undergoes subsequent trapping with organoboron nucleophiles to accomplish the carboallylation, carboalkenylation, carboalkynylation, and carboarylation of alkenes with regio- and chemoselective control. The mechanistic intricacies of this difunctionalization were elucidated through Stern-Volmer quenching studies, photochemical quantum yield measurements, and trapping experiments of radical and ionic intermediates.
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页码:9189 / 9195
页数:7
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