The first example of copper-catalyzed four-component coupling reaction of aryl iodides, Se powder, secondary amines, and maleimides is developed. This reaction provides an efficient and concise route to access aminoarylselenated maleimides via double C–Se bonds and C–N bond formation. The appealing features of this transformation are the use of Se powder as a selenating reagent, a green catalytic system, a wide range of substrate scope, and late-stage selenation of bioactive compounds
Artificial metalloenzymes enable several non-natural chemical transformations by hosting a metal ca...
We have developed a copper-catalyzed process for the coupling of aldehydes, amines, and boronic acid...
[[abstract]]An efficient three-component coupling reaction of aldehyde, pyrrolidine and tributylstan...
A copper-catalyzed three-component coupling reaction of azoles, Se powder, and aryl iodide is descri...
A new and efficient copper-catalyzed C<sub>3</sub> aryl- and heteroarylselenation of indoles employi...
Domino C–Se cross-coupling of 2-(iodoaryl)selenoureas with aryl iodides has been accomplished in the...
Using Se powder as the selenating reagent, the copper-catalyzed double C–Se cross-coupling of aryl i...
A synthetic method has been developed for the synthesis of unsymmetrical ferrocene aryl chalcogenide...
The first copper(I)-catalyzed direct three-component coupling of ethyl glyoxylate, p-anisidine, and ...
Novel amino acid substituted imidazoles engendered from amino acid alkyl ester hydrochlorides and 2-...
The three-component coupling of tertiary amines, arynes, and aryl selenium bromide or diaryl diselen...
A mild, convenient, and effective strategy is developed for the synthesis of alkynyl selenides from ...
Silver(I) catalyzed phenylselenylation of terminal alkynes and organoboronic acids has been demonstr...
Despite the remarkable success of the copper-catalyzed oxidative coupling reaction, direct cross-cou...
A three-component reaction of triethoxysilanes, sulfur dioxide, and hydrazines catalyzed by copper(...
Artificial metalloenzymes enable several non-natural chemical transformations by hosting a metal ca...
We have developed a copper-catalyzed process for the coupling of aldehydes, amines, and boronic acid...
[[abstract]]An efficient three-component coupling reaction of aldehyde, pyrrolidine and tributylstan...
A copper-catalyzed three-component coupling reaction of azoles, Se powder, and aryl iodide is descri...
A new and efficient copper-catalyzed C<sub>3</sub> aryl- and heteroarylselenation of indoles employi...
Domino C–Se cross-coupling of 2-(iodoaryl)selenoureas with aryl iodides has been accomplished in the...
Using Se powder as the selenating reagent, the copper-catalyzed double C–Se cross-coupling of aryl i...
A synthetic method has been developed for the synthesis of unsymmetrical ferrocene aryl chalcogenide...
The first copper(I)-catalyzed direct three-component coupling of ethyl glyoxylate, p-anisidine, and ...
Novel amino acid substituted imidazoles engendered from amino acid alkyl ester hydrochlorides and 2-...
The three-component coupling of tertiary amines, arynes, and aryl selenium bromide or diaryl diselen...
A mild, convenient, and effective strategy is developed for the synthesis of alkynyl selenides from ...
Silver(I) catalyzed phenylselenylation of terminal alkynes and organoboronic acids has been demonstr...
Despite the remarkable success of the copper-catalyzed oxidative coupling reaction, direct cross-cou...
A three-component reaction of triethoxysilanes, sulfur dioxide, and hydrazines catalyzed by copper(...
Artificial metalloenzymes enable several non-natural chemical transformations by hosting a metal ca...
We have developed a copper-catalyzed process for the coupling of aldehydes, amines, and boronic acid...
[[abstract]]An efficient three-component coupling reaction of aldehyde, pyrrolidine and tributylstan...