International audienceMesoporous silica nanoparticles (MSNs) are experiencing rapid development in the biomedical field for imaging and for use in heterogeneous catalysis. Although the synthesis of MSNs with various morphologies and particle sizes has been reported, synthesis of a pore network with monodispersion control below 200 nm is still challenging. We achieved this goal using mild conditions. The reaction occurred at atmospheric pressure with a templating sol?gel technique using cetyltrimethylammonium (CTA+) as the templating surfactant and small organic amines (SOAs) as the mineralizing agent. Production of small pore sizes was performed for the first time, using pure and redispersible monodispersed porous nanophases with either ste...
Colloidal assembly of silica (nano)particles is a powerful method to design functional materials acr...
Silica nanoparticles with controlled size and morphology and a high degree of monodispersity have be...
Mesoporous silica nanoparticles (MSNs) combine the benefits of nanomaterials and mesoporous silica m...
A new and facile approach has been developed to prepare monodisperse mesoporous silica nanospheres (...
Two combined approaches of Stöber method and supramolecular assembly of surfactant molecules, under ...
Two combined approaches of Stöber method and supramolecular assembly of surfactant molecules, under ...
Two combined approaches of Stöber method and supramolecular assembly of surfactant molecules, under ...
Two combined approaches of Stöber method and supramolecular assembly of surfactant molecules, under ...
Mesoporous silica nanostructures (MSNs) attract high interest due to their unique and tunable physic...
Mesoporous silica nanostructures (MSNs) attract high interest due to their unique and tunable physic...
Mesoporous silica nanostructures (MSNs) attract high interest due to their unique and tunable physic...
Mesoporous materials with hierarchical morphologies have recently gained attention due to their stru...
Morphological transitions during the surfactant-directed synthesis of mesoporous silica nanoparticle...
Mesoporous materials with hierarchical morphologies have recently gained attention due to their stru...
This work focuses on engineering the pore orientations and pore sizes of mesoporous silica nanospher...
Colloidal assembly of silica (nano)particles is a powerful method to design functional materials acr...
Silica nanoparticles with controlled size and morphology and a high degree of monodispersity have be...
Mesoporous silica nanoparticles (MSNs) combine the benefits of nanomaterials and mesoporous silica m...
A new and facile approach has been developed to prepare monodisperse mesoporous silica nanospheres (...
Two combined approaches of Stöber method and supramolecular assembly of surfactant molecules, under ...
Two combined approaches of Stöber method and supramolecular assembly of surfactant molecules, under ...
Two combined approaches of Stöber method and supramolecular assembly of surfactant molecules, under ...
Two combined approaches of Stöber method and supramolecular assembly of surfactant molecules, under ...
Mesoporous silica nanostructures (MSNs) attract high interest due to their unique and tunable physic...
Mesoporous silica nanostructures (MSNs) attract high interest due to their unique and tunable physic...
Mesoporous silica nanostructures (MSNs) attract high interest due to their unique and tunable physic...
Mesoporous materials with hierarchical morphologies have recently gained attention due to their stru...
Morphological transitions during the surfactant-directed synthesis of mesoporous silica nanoparticle...
Mesoporous materials with hierarchical morphologies have recently gained attention due to their stru...
This work focuses on engineering the pore orientations and pore sizes of mesoporous silica nanospher...
Colloidal assembly of silica (nano)particles is a powerful method to design functional materials acr...
Silica nanoparticles with controlled size and morphology and a high degree of monodispersity have be...
Mesoporous silica nanoparticles (MSNs) combine the benefits of nanomaterials and mesoporous silica m...