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Photoredox/Nickel Dual Catalysis for C(sp2)-C(sp3) Cross-Electrophile Coupling Reaction of Mesylates of Phenols and Primary Alcohols
被引:6
|作者:
Jana, Sayan K.
[1
]
Bhattacharya, Rayan
[1
]
Dey, Purusattam
[1
]
Chakraborty, Sunit
[1
]
Maji, Biplab
[1
]
机构:
[1] Indian Inst Sci Educ & Res Kolkata, Dept Chem Sci, Mohanpur 741246, India
来源:
ACS CATALYSIS
|
2024年
/
14卷
/
18期
关键词:
cross-electrophile coupling;
photoredox/nickel dualcatalysis;
alcohol coupling partner;
phenols;
iterative cross-coupling;
ARYL BROMIDES;
NICKEL;
ALKYL;
HALIDES;
ESTERS;
TRANSMETALATION;
ALLYLATION;
MECHANISMS;
OXALATES;
D O I:
10.1021/acscatal.4c03975
中图分类号:
O64 [物理化学(理论化学)、化学物理学];
学科分类号:
070304 ;
081704 ;
摘要:
Introducing alkyl groups, particularly through innovative C(sp(2))-C(sp(3)) bond-forming methods utilizing abundant feedstocks, holds promise for expanding chemical space, especially in drug discovery programs. Herein, we employed biomass-derived abundant phenols and unactivated aliphatic alcohols as the coupling partners for C(sp(2))-C(sp(3)) cross-electrophile coupling reactions. Our innovation involved activating both the coupling partner via the same activator and designing a catalytic system that activates stronger bonds while ensuring cross-selectivity. The visible-light photoredox/nickel dual catalytic systems accommodate a large substrate scope tolerating diverse functional groups. Besides, both the activation and cross-coupling reactions could be performed in one pot, and the reaction could be scaled up. The method was also executed for iterative cross-coupling and applied for the late-stage functionalization of drug molecules, highlighting their synthetic applicability. Preliminary mechanistic studies involving luminescence quenching, cyclic voltammetry, radical quenching, and radical clock studies elucidated the proposed reaction mechanism.
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页码:14172 / 14182
页数:11
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