Anti-Selective Carbosilylation: Nickel-Catalyzed Multicomponent Reaction of Solid Me3SiZnI

被引:4
|
作者
Chandrasekaran, Revathi [1 ]
Selvam, Keerthika [1 ]
Rajeshkumar, Thayalan [2 ]
Chinnusamy, Tamilselvi [1 ]
Maron, Laurent [2 ]
Rasappan, Ramesh [1 ]
机构
[1] Indian Inst Sci Educ & Res, Sch Chem, Thiruvananthapuram, Kerala, India
[2] Inst Natl Sci Appl, Lab Phys & Chim Nanoobjets, F-31077 Toulouse 4, France
关键词
nickel catalysis; silylation; anti-selective; cross-coupling; CROSS-COUPLING REACTIONS; ALPHA-BETA-UNSATURATION; ALLYLIC SUBSTITUTION; NUCLEOPHILIC SILICON; SILYLATIVE CYCLIZATION; TRANS-SILYLVINYLATION; CONJUGATE ADDITION; INTERNAL ALKYNES; PROTECTING GROUP; VERSATILE ROUTE;
D O I
10.1002/anie.202318689
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The stereodefined and highly substituted vinylsilanes are essential building blocks for constructing complex organic molecules. Transition metal-mediated silylmetalation of alkynes was developed to overcome the limitations of conventional hydrosilylations; however, a very limited study was carried out to utilize transient vinylmetal species in cross-coupling reactions. Moreover, they produce syn-adduct, and the anti-selective cross-coupling is still unknown and highly desired. Silylzinc reagents are highly functional group tolerant, however, their synthesis from pyrophoric silyllithium and dissolved lithium salts hampers cross-coupling reactions. Our novel solid silylzinc reagents circumvent these constraints are employed in the anti-selective synthesis of vinylsilanes via a multi-component reaction involving Me3SiZnI, terminal alkynes, and activated alkyl halides. An intensive computational and experimental investigation of the mechanism reveals an equilibrium between the intermediate syn- and anti-adducts; the greater barrier at the single electron reduction of alkyl halides and the thermodynamic stability of the Ni(III) adduct determine the anti-selectivity.
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页数:8
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