Thiol-functionalized organosilica microspheres were synthesized via a two-step process: (1) acid-catalyzed hydrolysis and condensation of 3-mercaptopropyltrimethoxysilane (MPTMS), followed by (2) base-catalyzed condensation, which led to the rapid formation of emulsion droplets with a narrow size distribution. These droplets continued to condense to form solid microspheres. Solution Si-29 NMR and optical microscopy were applied to study the mechanism of this novel synthetic route. Solid-state Si-29 NMR, SEM, zeta potential titration, and Coulter counter measurements were used to study the bulk and surface properties and to determine the particle size distributions of the final microspheres. Compared to conventional Stober silica particles, ...
Hollow nanospheres with a particle size of less than 25 nm have been successfully fabricated using a...
Micron sized silica particles are commonly used as drug carriers, biosensors and catalytic supports....
Porous silicon (PSi) is a versatile matrix with tailorable surface reactivity, which allows the proc...
A new generation of optically encoded organosilica microspheres, suitable for both solid phase synth...
The ability to track multiple compounds through a combinatorial synthesis on solid support particles...
One-step synthesis of functional mesoporous organosilica particles having both ethane fragments and ...
The preparation of hierarchically structured organosilicon microcapsules from commercially available...
Periodic mesoporous organosilica (PMO) spherical particles with different organic contents were synt...
Organosilane hybrid materials are of interest in the development of diagnostic devices and drug-deli...
A novel approach has been developed to synthesize thiolated sub-100 nm organosilica nanoparticles fr...
This paper reports on the synthesis of uniformly dye-doped organosilica particles with narrow size d...
In this article, we report a novel, nanoprecipitation-based method for preparing silica nanoparticle...
A novel method for the preparation of monodisperse porous silica microspheres with controllable morp...
An effective and reproducible method of preparing highly monodisperse organic-inorganic hybrid silic...
Organosilica microspheres synthesised via a novel surfactant-free emulsion-based method show applica...
Hollow nanospheres with a particle size of less than 25 nm have been successfully fabricated using a...
Micron sized silica particles are commonly used as drug carriers, biosensors and catalytic supports....
Porous silicon (PSi) is a versatile matrix with tailorable surface reactivity, which allows the proc...
A new generation of optically encoded organosilica microspheres, suitable for both solid phase synth...
The ability to track multiple compounds through a combinatorial synthesis on solid support particles...
One-step synthesis of functional mesoporous organosilica particles having both ethane fragments and ...
The preparation of hierarchically structured organosilicon microcapsules from commercially available...
Periodic mesoporous organosilica (PMO) spherical particles with different organic contents were synt...
Organosilane hybrid materials are of interest in the development of diagnostic devices and drug-deli...
A novel approach has been developed to synthesize thiolated sub-100 nm organosilica nanoparticles fr...
This paper reports on the synthesis of uniformly dye-doped organosilica particles with narrow size d...
In this article, we report a novel, nanoprecipitation-based method for preparing silica nanoparticle...
A novel method for the preparation of monodisperse porous silica microspheres with controllable morp...
An effective and reproducible method of preparing highly monodisperse organic-inorganic hybrid silic...
Organosilica microspheres synthesised via a novel surfactant-free emulsion-based method show applica...
Hollow nanospheres with a particle size of less than 25 nm have been successfully fabricated using a...
Micron sized silica particles are commonly used as drug carriers, biosensors and catalytic supports....
Porous silicon (PSi) is a versatile matrix with tailorable surface reactivity, which allows the proc...