A continuous-flow two-step process for the production of multifunctional intermediate compounds was performed with a combination of two column reactors packed with different organic immobilized catalysts. The first step of the reaction, nitroaldol condensation between aromatic aldehydes and nitromethane, is promoted by a silica gel-supported primary amine; the second step, Michael addition of beta-dicarbonyl compounds to the nitrostyrenes obtained in the first step, is catalyzed by a silica gel-supported guanidine TBD. In both cases, the catalysts can be directly reused for several runs with no significant changes in activity
A key aim of biocatalysis is to mimic the ability of eukaryotic cells to carry out multistep cascade...
Herein, we describe the use of continuous flow chemistry for selective, efficient and reproducible n...
A mild base-catalyzed protocol for the synthesis of substituted nitroalkane derivatives has been dev...
Synthesis of β-nitrostyrene derivatives and their following reactions through two-step continuous-fl...
The work has been focused on the study of C-C bond formation reactions, such as nitroaldol and Micha...
Flow chemistry and heterogenous catalysis hold incredible potential from a sustainability point of v...
Many advantages have been demonstrated for continuous flow chemistry in comparison with batch chemis...
A proof-of-concept study for a new type of continuous-flow reactor based on porous aminosilane-graft...
Continuous flow chemistry is an enabling technique in organic chemistry. Advantages include extremel...
Continuous flow chemical processes offer several advantages as compared to batch chemistries. These ...
Organometallic catalysis is a powerful tool for chemical synthesis, and the field still evolves at a...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemical Engineering, February 2012...
This dissertation describes the development of simplified microreactors to be used in multi-step rea...
Supported ionic liquid-like phases (SILLPs) are able to efficiently catalyse the cyanosilylation of ...
The continuous flow synthesis of active pharmaceutical ingredients, value-added chemicals, and mater...
A key aim of biocatalysis is to mimic the ability of eukaryotic cells to carry out multistep cascade...
Herein, we describe the use of continuous flow chemistry for selective, efficient and reproducible n...
A mild base-catalyzed protocol for the synthesis of substituted nitroalkane derivatives has been dev...
Synthesis of β-nitrostyrene derivatives and their following reactions through two-step continuous-fl...
The work has been focused on the study of C-C bond formation reactions, such as nitroaldol and Micha...
Flow chemistry and heterogenous catalysis hold incredible potential from a sustainability point of v...
Many advantages have been demonstrated for continuous flow chemistry in comparison with batch chemis...
A proof-of-concept study for a new type of continuous-flow reactor based on porous aminosilane-graft...
Continuous flow chemistry is an enabling technique in organic chemistry. Advantages include extremel...
Continuous flow chemical processes offer several advantages as compared to batch chemistries. These ...
Organometallic catalysis is a powerful tool for chemical synthesis, and the field still evolves at a...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemical Engineering, February 2012...
This dissertation describes the development of simplified microreactors to be used in multi-step rea...
Supported ionic liquid-like phases (SILLPs) are able to efficiently catalyse the cyanosilylation of ...
The continuous flow synthesis of active pharmaceutical ingredients, value-added chemicals, and mater...
A key aim of biocatalysis is to mimic the ability of eukaryotic cells to carry out multistep cascade...
Herein, we describe the use of continuous flow chemistry for selective, efficient and reproducible n...
A mild base-catalyzed protocol for the synthesis of substituted nitroalkane derivatives has been dev...