A nickel-catalyzed conjunctive cross-coupling of simple alkenyl amides with aryl iodides and aryl boronic esters is reported. The reaction is enabled by an electron-deficient olefin (EDO) ligand, dimethyl fumarate, and delivers the desired 1,2-diarylated products with excellent regiocontrol. Under optimized conditions, a wide range of amides derived from 3-butenoic acid, 4-pentenoic acid, and allyl amine are compatible substrates. This methodology represents the first example of regiocontrolled 1,2-diarylation directed by a native amide functional group. Computational analysis sheds light on potential substrate binding mode and the role of EDO ligand in the reductive elimination step
The first nickel catalyzed deprotonative cross coupling between C(sp3)-H bonds and aryl chlorides is...
This dissertation describes efforts in the field of nickel-catalyzed amide C–N bond activations and ...
The authors thank the ERC (Advanced Researcher award-FUNCAT), the EPSRC (grant no EP/J011053/1) and ...
A nickel-catalyzed conjunctive cross-coupling of simple alkenyl amides with aryl iodides and aryl bo...
Abstract Electron-deficient olefin (EDO) ligands are known to promote a variety of nickel-catalyzed...
This dissertation describes the development of nickel-catalyzed arylations of amides via amide C–N b...
1,1-Diarylalkanes are important structural frameworks which are widespread in biologically active mo...
A nickel-catalyzed oxidative coupling of zinc amides with organomagnesium compounds selectively prod...
A three-component coupling of aryl bromides, arylboron reagents, and alkenylarenes is presented. The...
Transition metal-catalyzed cross-couplings provide a powerful means to assemble carbon–carbon (C–C) ...
A three-component coupling of aryl bromides, arylboron reagents, and alkenylarenes is presented. The...
A general Negishi acylation of primary amides enabled by a combination of site-selective <i>N</i>,<i...
Recent studies have demonstrated that amides can be used in nickel-catalyzed reactions that lead to ...
A nickel-catalyzed conjunctive cross-coupling between non-conjugated alkenes, aryl iodides, and alky...
We disclose a [(PhO)<sub>3</sub>P]/NiBr<sub>2</sub>-catalyzed regioselective β,δ-diarylation of unac...
The first nickel catalyzed deprotonative cross coupling between C(sp3)-H bonds and aryl chlorides is...
This dissertation describes efforts in the field of nickel-catalyzed amide C–N bond activations and ...
The authors thank the ERC (Advanced Researcher award-FUNCAT), the EPSRC (grant no EP/J011053/1) and ...
A nickel-catalyzed conjunctive cross-coupling of simple alkenyl amides with aryl iodides and aryl bo...
Abstract Electron-deficient olefin (EDO) ligands are known to promote a variety of nickel-catalyzed...
This dissertation describes the development of nickel-catalyzed arylations of amides via amide C–N b...
1,1-Diarylalkanes are important structural frameworks which are widespread in biologically active mo...
A nickel-catalyzed oxidative coupling of zinc amides with organomagnesium compounds selectively prod...
A three-component coupling of aryl bromides, arylboron reagents, and alkenylarenes is presented. The...
Transition metal-catalyzed cross-couplings provide a powerful means to assemble carbon–carbon (C–C) ...
A three-component coupling of aryl bromides, arylboron reagents, and alkenylarenes is presented. The...
A general Negishi acylation of primary amides enabled by a combination of site-selective <i>N</i>,<i...
Recent studies have demonstrated that amides can be used in nickel-catalyzed reactions that lead to ...
A nickel-catalyzed conjunctive cross-coupling between non-conjugated alkenes, aryl iodides, and alky...
We disclose a [(PhO)<sub>3</sub>P]/NiBr<sub>2</sub>-catalyzed regioselective β,δ-diarylation of unac...
The first nickel catalyzed deprotonative cross coupling between C(sp3)-H bonds and aryl chlorides is...
This dissertation describes efforts in the field of nickel-catalyzed amide C–N bond activations and ...
The authors thank the ERC (Advanced Researcher award-FUNCAT), the EPSRC (grant no EP/J011053/1) and ...