A broad range of differently substituted dihydropyrimidines and thiazines can be efficiently prepared by using a four-component reaction between phosphonates, nitriles, aldehydes, and iso(thio)cyanates. The scope and limitations of this multicomponent reaction are fully described. Variation of all four components has been investigated. The nitrile and aldehyde inputs can be varied extensively, but variation of the phosphonate input remains limited. An interesting rearrangement leading to phosphoramidates has been observed, Furthermore, the multicomponent reaction seems to be restricted to the use of isocyanates with strongly electron-withdrawing substituents, but an interesting additional exchange reaction under microwave conditions leads t...
In a search for new multicomponent strategies leading to valuable small heterocycles, a new highly d...
1067-1071A simple,economic and efficient one pot synthesis of some sub s tituted 2-o xo-1,2,3,4-t et...
The majority of the drugs on the market today are entirely chemically synthesized in the laboratory....
A facile and efficient one-pot three-component reaction method for the synthesis of thiazine-dicarbo...
(Chemical Equation Presentation) A broad range of isonitrile-functionalized 3,4-dihydropyridin-2-one...
Multicomponent reactions are a powerful tool in the synthesis of complex target molecules because mu...
Multicomponent reactions (MCRs) are processes in which three or more reactants are combined in one p...
A series of pyrimidine-5-carbonitrile derivatives was efficiently synthesized via one-pot, multi com...
The majority of the drugs on the market today are entirely chemically synthesized in the laboratory....
The majority of the drugs on the market today are entirely chemically synthesized in the laboratory....
Present work refers to the design, synthesis, bioevaluation and computational studies of multifuncti...
The three-component reactions of aldehydes, electron deficient alkynes and ureas/thioureas have been...
The multicomponent reaction of 2-nitroacetophenone (or nitroacetone), acetaldehyde diethyl acetal, β...
Since alcohols are accessible from indigestible biomass (lignocellulose), the development of novel p...
An alternative approach toward the simple and robust synthesis of highly substituted peptidic thiazo...
In a search for new multicomponent strategies leading to valuable small heterocycles, a new highly d...
1067-1071A simple,economic and efficient one pot synthesis of some sub s tituted 2-o xo-1,2,3,4-t et...
The majority of the drugs on the market today are entirely chemically synthesized in the laboratory....
A facile and efficient one-pot three-component reaction method for the synthesis of thiazine-dicarbo...
(Chemical Equation Presentation) A broad range of isonitrile-functionalized 3,4-dihydropyridin-2-one...
Multicomponent reactions are a powerful tool in the synthesis of complex target molecules because mu...
Multicomponent reactions (MCRs) are processes in which three or more reactants are combined in one p...
A series of pyrimidine-5-carbonitrile derivatives was efficiently synthesized via one-pot, multi com...
The majority of the drugs on the market today are entirely chemically synthesized in the laboratory....
The majority of the drugs on the market today are entirely chemically synthesized in the laboratory....
Present work refers to the design, synthesis, bioevaluation and computational studies of multifuncti...
The three-component reactions of aldehydes, electron deficient alkynes and ureas/thioureas have been...
The multicomponent reaction of 2-nitroacetophenone (or nitroacetone), acetaldehyde diethyl acetal, β...
Since alcohols are accessible from indigestible biomass (lignocellulose), the development of novel p...
An alternative approach toward the simple and robust synthesis of highly substituted peptidic thiazo...
In a search for new multicomponent strategies leading to valuable small heterocycles, a new highly d...
1067-1071A simple,economic and efficient one pot synthesis of some sub s tituted 2-o xo-1,2,3,4-t et...
The majority of the drugs on the market today are entirely chemically synthesized in the laboratory....