International audienceWell- ordered organic - inorganic mesoporous films are prepared using an original two- step synthesis and compositions up to 50 mol% methyltriethoxysilane ( MTES). These materials exhibit the three different mesostructures ( 2D- hexagonal, 3D- hexagonal and cubic) previously observed in the pure silica system with significant modifications of their domain of stability. During deposition and drying of organosilicate films, MTES monomers progressively condense at the internal surface of the silica clusters in agreement with the monomer - cluster growth model, leading to a significant reduction of the microporosity in the silica walls of the mesoporous structure
Despite extensive studies on mesoporous silica since the early 1990s, the synthesis of two‐dimension...
Inorganic-organic hybrid mesoporous silica thin films with covalently bonded carboxylic acid groups ...
Organic mesoporous silicas (OMSs) were synthesized in the presence of urea via one-pot synthesis met...
[[abstract]]Periodic mesoporous organosilica (PMO) thin films with long-range molecular order within...
International audiencePeriodic mesoporous organosilicas (PMOs) are obtained by the hydrolysiscondens...
Hybrid mesoporous silica films were prepared in acid-catalysed medium using a one-pot self-assembly ...
A new type of mesostructured hybrid organic-inorganic film has been synthesised by evaporation-induc...
One-pot self-assembled hybrid films were synthesized by the cohydrolysis of methyltriethoxysilane an...
One-pot self-assembled hybrid films were synthesized by the cohydrolysis of methyltriethoxysilane an...
Periodic mesoporous organosilica (PMO) thin films were synthesized by evaporation-induced self-assem...
grantor: University of TorontoOriented mesoporous; silica films have been synthesized at a...
A simple solution: In the simple approach to silica films with perpendicular mesochannels presented ...
Mesoporous films and monoliths with different thicknesses have been synthesized through evaporation-...
Despite extensive studies on mesoporous silica since the early 1990s, the synthesis of two-dimension...
We describe the syntheses and characterization of a series of periodic mesoporous organosilica (PMO)...
Despite extensive studies on mesoporous silica since the early 1990s, the synthesis of two‐dimension...
Inorganic-organic hybrid mesoporous silica thin films with covalently bonded carboxylic acid groups ...
Organic mesoporous silicas (OMSs) were synthesized in the presence of urea via one-pot synthesis met...
[[abstract]]Periodic mesoporous organosilica (PMO) thin films with long-range molecular order within...
International audiencePeriodic mesoporous organosilicas (PMOs) are obtained by the hydrolysiscondens...
Hybrid mesoporous silica films were prepared in acid-catalysed medium using a one-pot self-assembly ...
A new type of mesostructured hybrid organic-inorganic film has been synthesised by evaporation-induc...
One-pot self-assembled hybrid films were synthesized by the cohydrolysis of methyltriethoxysilane an...
One-pot self-assembled hybrid films were synthesized by the cohydrolysis of methyltriethoxysilane an...
Periodic mesoporous organosilica (PMO) thin films were synthesized by evaporation-induced self-assem...
grantor: University of TorontoOriented mesoporous; silica films have been synthesized at a...
A simple solution: In the simple approach to silica films with perpendicular mesochannels presented ...
Mesoporous films and monoliths with different thicknesses have been synthesized through evaporation-...
Despite extensive studies on mesoporous silica since the early 1990s, the synthesis of two-dimension...
We describe the syntheses and characterization of a series of periodic mesoporous organosilica (PMO)...
Despite extensive studies on mesoporous silica since the early 1990s, the synthesis of two‐dimension...
Inorganic-organic hybrid mesoporous silica thin films with covalently bonded carboxylic acid groups ...
Organic mesoporous silicas (OMSs) were synthesized in the presence of urea via one-pot synthesis met...