During the past two decades, new insights have driven the development and optimization of aminated materials as aldol condensation catalysts. Amines, either primary or secondary, facilitate the reaction via an enamine mechanism. If the spatial placement with respect to the amine allows it, weak acid sites such as silanols or hydroxyls, can cooperate as hydrogen bond donors and aid in proton transfer steps. Furthermore, the reaction environment, i.e., support and solvent and their mutual interactions, is also a key determining factor. In particular, co-feeding small amounts of water suppresses the formation of inhibiting and site-blocking species. However, silica-based materials are susceptible to hydrolysis. This led to the development of w...
A highly efficient water-tolerant, solid-base catalyst for the self-condensation of biomass-derived ...
Considerable research has been directed toward identifying the mechanisms involved in biosilicificat...
© 2015 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim. A highly efficient water-tolerant, solid-ba...
A highly efficient solid-base organocatalyst for the gas-phase aldol self-condensation of n-butanal ...
tAminated silica materials are known to efficiently catalyse aldol condensations, especially when si...
In this study, we demonstrate how materials science can be combined with the established methods of ...
The reusability of methylaminopropyl active sites grafted on mesoporous amorphous silica, either wit...
The development of a performant aminated catalyst for aldol condensations requires the combined tuni...
Free silanol groups are known to promote the activity of aminated silica. In this work the effect of...
The experimentally observed effects of water, and the effects of silanol groups, on the liquid-phase...
Aminopropyl-functionalized mesoporous silica nanoparticles (AP-MSN) catalyze aldol condensations. Th...
Cooperative interactions between aminoalkylsilanes and silanols on a silica surface can be controlle...
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 water-tolerant, solid-base catalyst for the self-condensation of biomass-derived ...
Considerable research has been directed toward identifying the mechanisms involved in biosilicificat...
© 2015 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim. A highly efficient water-tolerant, solid-ba...
A highly efficient solid-base organocatalyst for the gas-phase aldol self-condensation of n-butanal ...
tAminated silica materials are known to efficiently catalyse aldol condensations, especially when si...
In this study, we demonstrate how materials science can be combined with the established methods of ...
The reusability of methylaminopropyl active sites grafted on mesoporous amorphous silica, either wit...
The development of a performant aminated catalyst for aldol condensations requires the combined tuni...
Free silanol groups are known to promote the activity of aminated silica. In this work the effect of...
The experimentally observed effects of water, and the effects of silanol groups, on the liquid-phase...
Aminopropyl-functionalized mesoporous silica nanoparticles (AP-MSN) catalyze aldol condensations. Th...
Cooperative interactions between aminoalkylsilanes and silanols on a silica surface can be controlle...
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 water-tolerant, solid-base catalyst for the self-condensation of biomass-derived ...
Considerable research has been directed toward identifying the mechanisms involved in biosilicificat...
© 2015 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim. A highly efficient water-tolerant, solid-ba...