AbstractA straightforward procedure to synthesize cysteine functionalized materials with tailored support properties has been developed. It allows tuning the hydrophobicity of the material via the incorporation of aliphatics, aromatics or silica in the framework structure. The aldol condensation of 4-nitrobenzaldehyde and acetone, as a probe reaction for the catalytic activity of the produced materials, exhibited a remarkable interplay between the reactant, solvent, traces of water and support hydrophobicity. A selective enrichment in the catalyst pores of specific bulk phase molecules is believed to be the key to achieve the targeted catalyst performance
Metalloenzymes catalyse the most fundamental reactions in organic chemistryfrom oxidation of hydroca...
During the past two decades, new insights have driven the development and optimization of aminated m...
A relatively new class of three-dimensional ordered mesoporous silicates, KIT-6, incorporated with ...
A straightforward procedure to synthesize cysteine functionalized materials with tailored support pr...
AbstractA straightforward procedure to synthesize cysteine functionalized materials with tailored su...
A periodic mesoporous organosilica (PMO) that contains ethylene bridges was functionalized to obtain...
The reusability of methylaminopropyl active sites grafted on mesoporous amorphous silica, either wit...
The catalytic deoxygenation of bio-based feedstocks to fuels and chemicals presents new challenges t...
Various organocatalysts are successfully heterogenised to robust inorganic frameworks, such as mesop...
Lewis acid Sn-BEA catalysts with tunable morphology and hydrophobicity were successfully synthesized...
The attention paid nowadays to the production of biomass-based products such as biodiesel has led to...
Hybrid inorganic–organic materials comprising organic functional groups tethered from silica surface...
The amination reaction of biphenylene moieties in crystal like mesoporous silica (Bph PMO) is succes...
Cascade catalysis is the process where multiple synthetic transformations are catalyzed in a one-pot...
The major goals of this thesis were to: (1) create a site-isolated aminosilica material with higher ...
Metalloenzymes catalyse the most fundamental reactions in organic chemistryfrom oxidation of hydroca...
During the past two decades, new insights have driven the development and optimization of aminated m...
A relatively new class of three-dimensional ordered mesoporous silicates, KIT-6, incorporated with ...
A straightforward procedure to synthesize cysteine functionalized materials with tailored support pr...
AbstractA straightforward procedure to synthesize cysteine functionalized materials with tailored su...
A periodic mesoporous organosilica (PMO) that contains ethylene bridges was functionalized to obtain...
The reusability of methylaminopropyl active sites grafted on mesoporous amorphous silica, either wit...
The catalytic deoxygenation of bio-based feedstocks to fuels and chemicals presents new challenges t...
Various organocatalysts are successfully heterogenised to robust inorganic frameworks, such as mesop...
Lewis acid Sn-BEA catalysts with tunable morphology and hydrophobicity were successfully synthesized...
The attention paid nowadays to the production of biomass-based products such as biodiesel has led to...
Hybrid inorganic–organic materials comprising organic functional groups tethered from silica surface...
The amination reaction of biphenylene moieties in crystal like mesoporous silica (Bph PMO) is succes...
Cascade catalysis is the process where multiple synthetic transformations are catalyzed in a one-pot...
The major goals of this thesis were to: (1) create a site-isolated aminosilica material with higher ...
Metalloenzymes catalyse the most fundamental reactions in organic chemistryfrom oxidation of hydroca...
During the past two decades, new insights have driven the development and optimization of aminated m...
A relatively new class of three-dimensional ordered mesoporous silicates, KIT-6, incorporated with ...