| Literature DB >> 32584490 |
Hai-Dong Xia1, Zhong-Liang Li2, Qiang-Shuai Gu2, Xiao-Yang Dong1, Jia-Heng Fang1, Xuan-Yi Du1, Li-Lei Wang1, Xin-Yuan Liu1.
Abstract
We describe a photoinduced copper-catalyzed asymmetric radical decarboxylative alkynylation of bench-stable N-hydroxyphthalimide(NHP)-type esters of racemic alkyl carboxylic acids with terminal alkynes, which provides a flexible platform for the construction of chiral C(sp3 )-C(sp) bonds. Critical to the success of this process are not only the use of the copper catalyst as a dual photo- and cross-coupling catalyst but also tuning of the NHP-type esters to inhibit the facile homodimerization of the alkyl radical and terminal alkyne, respectively. Owing to the use of stable and easily available NHP-type esters, the reaction features a broader substrate scope compared with reactions using the alkyl halide counterparts, covering (hetero)benzyl-, allyl-, and aminocarbonyl-substituted carboxylic acid derivatives, and (hetero)aryl and alkyl as well as silyl alkynes, thus providing a vital complementary approach to the previously reported method.Entities:
Keywords: alkynylation; asymmetric radical reactions; copper; decarboxylation; photocatalysis
Year: 2020 PMID: 32584490 DOI: 10.1002/anie.202006317
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336