A catalyst-free, environmentally benign three-component vinylogous Mukaiyama-Mannich reaction of pyrrole-based silyl dienolates is presented, which works effectively in both aqueous and solvent-free environments. Both lipophilic and hydrophilic aldehyde candidates are suitable substrates, allowing access to a rich repertoire of unsaturated vicinal aminolactam structures with virtually complete \u3b3-site selectivity and moderate to good anti-diastereoselectivity. The utility of this technology is highlighted by protecting group-free synthesis of densely hydroxylated, sugar-related lactam frameworks. The role of water as an indispensable H-bonding reaction propeller is demonstrated
Mukaiyama aldol, Mannich, and Michael reactions are arguably amongst the most important C–C bond for...
The vinylogous Mukaiyama aldol reaction (VMAR) allows efficient access to larger segments for comple...
<div><p>An efficient sequential one pot three component reaction involving anilines, DEAD/DMAD and g...
A catalyst-free, environmentally benign three-component vinylogous Mukaiyama–Mannich reaction of pyr...
A catalyst-free, environmentally benign three-component vinylogous Mukaiyama–Mannich reaction of pyr...
Pyrrole-based silyl dienolates undergo asymmetric vinylogous Mukaiyama Mannich reactions with a seri...
A reliable, catalytic asymmetric vinylogous Mukaiyama−Mannich reaction of pyrrole-based silyl dienol...
A reliable, catalytic asymmetric vinylogous Mukaiyama–Mannich reaction of pyrrole-based silyl dienol...
The first uncatalyzed, diastereoselective vinylogous Mukaiyama aldol reaction is reported, between ...
Densely substituted pyrrole-carboxylates have been prepared in good yields in a highly practical one...
The vinylogous aldol-type addition of a dienolsilyl ether, derived from 2,2,6-trimethyl-4H-1,3-dioxi...
Densely substituted pyrrole-carboxylates have been prepared in good yields in a highly practical one...
Denmark’s chiral bisphosphoramide/silicon tetrachloride system performs as an excellent Lewis base-L...
A practical, catalytic and enantioselective vinylogous Mukaiyama aldol reaction between 2-...
A vinylogous, silylative, and direct variant of the venerable Mukaiyama aldol reaction has been deve...
Mukaiyama aldol, Mannich, and Michael reactions are arguably amongst the most important C–C bond for...
The vinylogous Mukaiyama aldol reaction (VMAR) allows efficient access to larger segments for comple...
<div><p>An efficient sequential one pot three component reaction involving anilines, DEAD/DMAD and g...
A catalyst-free, environmentally benign three-component vinylogous Mukaiyama–Mannich reaction of pyr...
A catalyst-free, environmentally benign three-component vinylogous Mukaiyama–Mannich reaction of pyr...
Pyrrole-based silyl dienolates undergo asymmetric vinylogous Mukaiyama Mannich reactions with a seri...
A reliable, catalytic asymmetric vinylogous Mukaiyama−Mannich reaction of pyrrole-based silyl dienol...
A reliable, catalytic asymmetric vinylogous Mukaiyama–Mannich reaction of pyrrole-based silyl dienol...
The first uncatalyzed, diastereoselective vinylogous Mukaiyama aldol reaction is reported, between ...
Densely substituted pyrrole-carboxylates have been prepared in good yields in a highly practical one...
The vinylogous aldol-type addition of a dienolsilyl ether, derived from 2,2,6-trimethyl-4H-1,3-dioxi...
Densely substituted pyrrole-carboxylates have been prepared in good yields in a highly practical one...
Denmark’s chiral bisphosphoramide/silicon tetrachloride system performs as an excellent Lewis base-L...
A practical, catalytic and enantioselective vinylogous Mukaiyama aldol reaction between 2-...
A vinylogous, silylative, and direct variant of the venerable Mukaiyama aldol reaction has been deve...
Mukaiyama aldol, Mannich, and Michael reactions are arguably amongst the most important C–C bond for...
The vinylogous Mukaiyama aldol reaction (VMAR) allows efficient access to larger segments for comple...
<div><p>An efficient sequential one pot three component reaction involving anilines, DEAD/DMAD and g...