The kinetic and mechanistic understanding of cooperatively catalyzed aldol and nitroaldol condensations is probed using a series of mesoporous silicas functionalized with aminosilanes to provide bifunctional acid–base character. Mechanistically, a Hammett analysis is performed to determine the effects of electron-donating and electron-withdrawing groups of para-substituted benzaldehyde derivatives on the catalytic activity of each condensation reaction. This information is also used to discuss the validity of previously proposed catalytic mechanisms and to propose a revised mechanism with plausible reaction intermediates. For both reactions, electron-withdrawing groups increase the observed rates of reaction, though resonance effects play a...
A proof-of-concept study for a new type of continuous-flow reactor based on porous aminosilane-graft...
In this study, we demonstrate how materials science can be combined with the established methods of ...
During the past two decades, new insights have driven the development and optimization of aminated m...
A full mechanistic investigation is proposed for the industrially important cross-aldol condensation...
Intramolecular cooperativity in heterogeneous organocatalysts is investigated using alkanolamine-fun...
A highly efficient solid-base organocatalyst for the gas-phase aldol self-condensation of n-butanal ...
WOS: 000323507300047Several amino acids and their derivatives have been evaluated as organic catalys...
tAminated silica materials are known to efficiently catalyse aldol condensations, especially when si...
It is still not clear at the molecular level how the acidic silanol and basic alkylamine bifunctiona...
Free silanol groups are known to promote the activity of aminated silica. In this work the effect of...
In the nitroaldol reaction, condensation between a nitroalkane and an aldehyde yields a nitroalcohol...
The reusability of methylaminopropyl active sites grafted on mesoporous amorphous silica, either wit...
The structural and cooperative catalytic characteristics of acid and base co-functionalized mesoporo...
Molecular dynamics simulations are performed to investigate the cooperatively catalyzed aldol conden...
A periodic mesoporous organosilica (PMO) that contains ethylene bridges was functionalized to obtain...
A proof-of-concept study for a new type of continuous-flow reactor based on porous aminosilane-graft...
In this study, we demonstrate how materials science can be combined with the established methods of ...
During the past two decades, new insights have driven the development and optimization of aminated m...
A full mechanistic investigation is proposed for the industrially important cross-aldol condensation...
Intramolecular cooperativity in heterogeneous organocatalysts is investigated using alkanolamine-fun...
A highly efficient solid-base organocatalyst for the gas-phase aldol self-condensation of n-butanal ...
WOS: 000323507300047Several amino acids and their derivatives have been evaluated as organic catalys...
tAminated silica materials are known to efficiently catalyse aldol condensations, especially when si...
It is still not clear at the molecular level how the acidic silanol and basic alkylamine bifunctiona...
Free silanol groups are known to promote the activity of aminated silica. In this work the effect of...
In the nitroaldol reaction, condensation between a nitroalkane and an aldehyde yields a nitroalcohol...
The reusability of methylaminopropyl active sites grafted on mesoporous amorphous silica, either wit...
The structural and cooperative catalytic characteristics of acid and base co-functionalized mesoporo...
Molecular dynamics simulations are performed to investigate the cooperatively catalyzed aldol conden...
A periodic mesoporous organosilica (PMO) that contains ethylene bridges was functionalized to obtain...
A proof-of-concept study for a new type of continuous-flow reactor based on porous aminosilane-graft...
In this study, we demonstrate how materials science can be combined with the established methods of ...
During the past two decades, new insights have driven the development and optimization of aminated m...