A new and efficient method for the synthesis of amides via palladium-catalyzed C−C coupling of arylhalides with isocyanides is reported, by which a series of amides were formed from readily available starting materials under mild conditions. This transformation could extend its use to the synthesis of natural products and significant pharmaceuticals.
A novel three-component reaction of N-fluoropyridinium salts: a facile approach to imidazo[1,2-a]pyridines
作者:Alexander S. Kiselyov
DOI:10.1016/j.tetlet.2005.04.124
日期:2005.6
The reaction of N-fluoropyridinium triflate with isonitriles in acetonitrile and propionitrile in the presence of NaBH(OAc)3 led to the formation of the corresponding imidazo[1,2-a]pyridines in 44–73% yields. The proposed reaction mechanism involves the intermediate formation of a highly reactive carbene species and apparent reduction of the pyridinium intermediate with NaBH(OAc)3 to yield the targeted
在NaBH(OAc)3存在下,三氟甲磺酸N-氟代吡啶鎓与乙腈和丙腈中的异腈反应,以44-73%的收率形成相应的咪唑并[1,2- a ]吡啶。拟议的反应机理涉及高反应性卡宾物质的中间形成和吡啶鎓中间体与NaBH(OAc)3的明显还原,从而生成目标杂环。
Electrophotocatalytic Decarboxylative C−H Functionalization of Heteroarenes
formation with proton reduction remain an unsolved challenge. Herein, we report an electrophotocatalytic approach that merges organic electrochemistry with photocatalysis to achieve the efficient direct decarboxylative C−H alkylation and carbamoylation of heteroaromatic compounds through hydrogen evolution. This electrophotocatalytic method, which combines the high efficiency and selectivity of photocatalysis
Biomimetic asymmetric reduction of 2-functionalized quinolines has been successfully developed with the chiral and regenerable NAD(P)H model CYNAM in the presence of transfer catalyst simple achiral phosphoric acids, providing the chiral 2-functionalized tetrahydroquinolines with up to 99% ee. Using this methodology as a key step, a chiral and potent opioid analgesic containing a 1,2,3,4-tetrahydroquinoline