A novel method for the preparation of monodisperse porous silica microspheres with controllable morphology and structure is reported. The starting porous polymer microspheres were first functionalized with ethylenediamine (EDA) to generate amino groups. Subsequently, silica nanoparticles were deposited in the porous polymer microsphere to form polymer/silica hybrid microspheres via a modified sol-gel process in the presence of tetra-n-butylammonium bromide (TBAB) or tetramethyl ammonium hydroxide (TMAH). Upon calcination of the polymer/silica hybrid microspheres, the porous silica microspheres were obtained. The morphology, inner structure, and properties of the porous silica microspheres were studied by field emission scanning electron mic...
The process of fabricating silica colloidosomes through sol-gel process, was described. The process ...
Monolith is an emerging technology applicable for separation, filtration, and chromatography due to ...
International audienceMesoporous silica nanoparticles (MSNs) are experiencing rapid development in t...
Silica-based stationary phases have been under investigation since they were first produced, and stu...
Monodisperse porous silica microspheres with a tunable particle size and pore size were fabricated b...
Monodispersed porous silica microspheres are synthesized by the hydrolysis and condensation of tetra...
Monodisperse "monolithic-structured" organic-inorganic composite microspheres were produced by a see...
The targeted design of monodisperse, mesoporous silica microspheres (MPSMs) as HPLC separation phase...
Hierarchically porous silica nanospheres with well-defined morphology and uniform particle size had ...
A new and facile approach has been developed to prepare monodisperse mesoporous silica nanospheres (...
Hybrid organic/inorganic nanocomposites combine the distinct properties of the organic polymer and t...
Mesoporous silica microspheres (MPSMs) represent a promising material as a stationary phase for HPLC...
We successfully synthesized two different structures, silica nanospheres and porous polymer membrane...
Ordered mesoporous silica materials are characterized by uniform and tunable pore size, high surface...
We successfully synthesized two different structures, silica nanospheres and porous polymer membrane...
The process of fabricating silica colloidosomes through sol-gel process, was described. The process ...
Monolith is an emerging technology applicable for separation, filtration, and chromatography due to ...
International audienceMesoporous silica nanoparticles (MSNs) are experiencing rapid development in t...
Silica-based stationary phases have been under investigation since they were first produced, and stu...
Monodisperse porous silica microspheres with a tunable particle size and pore size were fabricated b...
Monodispersed porous silica microspheres are synthesized by the hydrolysis and condensation of tetra...
Monodisperse "monolithic-structured" organic-inorganic composite microspheres were produced by a see...
The targeted design of monodisperse, mesoporous silica microspheres (MPSMs) as HPLC separation phase...
Hierarchically porous silica nanospheres with well-defined morphology and uniform particle size had ...
A new and facile approach has been developed to prepare monodisperse mesoporous silica nanospheres (...
Hybrid organic/inorganic nanocomposites combine the distinct properties of the organic polymer and t...
Mesoporous silica microspheres (MPSMs) represent a promising material as a stationary phase for HPLC...
We successfully synthesized two different structures, silica nanospheres and porous polymer membrane...
Ordered mesoporous silica materials are characterized by uniform and tunable pore size, high surface...
We successfully synthesized two different structures, silica nanospheres and porous polymer membrane...
The process of fabricating silica colloidosomes through sol-gel process, was described. The process ...
Monolith is an emerging technology applicable for separation, filtration, and chromatography due to ...
International audienceMesoporous silica nanoparticles (MSNs) are experiencing rapid development in t...