Traditionally, organosilica nanoparticles have been prepared inside micelles with an external silica shell for mechanical support. Here, we compare these hybrid core–shell particles with organosilica particles that are robust enough to be produced both inside micelles and alone in a sol–gel process. These particles form from octadecyltrimethoxy silane as silica source either in microemulsions, resulting in water-dispersible particles with a hydrophobic core, or precipitate from an aqueous mixture to form particles with both hydrophobic core and surface. We examine size and morphology of the particles by dynamic light scattering and transmission electron microscopy and show that the particles consist of Si–O–Si networks pervaded by alkyl cha...
This dissertation deals with two groups of silica-based composite materials, namely organic/silica c...
Porous hollow silica particles possess promising applications in many fields, ranging from drug deli...
The cyclohexane−igepal inverse microemulsion, comprehensively established for the synthesis of silic...
Water-dispersible organosilica nanoparticles were synthesized using microemulsions and micellar solu...
Silica nanoparticles for controlled release applications have been produced by the reaction of tetra...
We report an efficient and easy-to-implement waterborne sol–gel process for the synthesis of nanomet...
Silica nanoparticles with controlled size and morphology and a high degree of monodispersity have be...
Core-shell particles were formed by deposition of primary silica particles synthesized from sodium s...
We compare the two main sol-gel/emulsion methods to prepare silica-based microparticles doped with a...
In this article, a new type of core–shell nanoparticle is introduced. In contrast to most reported c...
Nanostructured systems constitute versatile carriers with multiple functions engineered in a nanomet...
Silica nanoparticles have been prepared in this work using water in oil (W/O) emulsion system at roo...
Core-shell structures containing active materials can be fabricated using almost infinite reactant c...
Thiol-functionalized organosilica microspheres were synthesized via a two-step process: (1) acid-cat...
Colloidal silica (silica sol) nanoparticles were synthesized by ammonia- and hydrochloric acid-catal...
This dissertation deals with two groups of silica-based composite materials, namely organic/silica c...
Porous hollow silica particles possess promising applications in many fields, ranging from drug deli...
The cyclohexane−igepal inverse microemulsion, comprehensively established for the synthesis of silic...
Water-dispersible organosilica nanoparticles were synthesized using microemulsions and micellar solu...
Silica nanoparticles for controlled release applications have been produced by the reaction of tetra...
We report an efficient and easy-to-implement waterborne sol–gel process for the synthesis of nanomet...
Silica nanoparticles with controlled size and morphology and a high degree of monodispersity have be...
Core-shell particles were formed by deposition of primary silica particles synthesized from sodium s...
We compare the two main sol-gel/emulsion methods to prepare silica-based microparticles doped with a...
In this article, a new type of core–shell nanoparticle is introduced. In contrast to most reported c...
Nanostructured systems constitute versatile carriers with multiple functions engineered in a nanomet...
Silica nanoparticles have been prepared in this work using water in oil (W/O) emulsion system at roo...
Core-shell structures containing active materials can be fabricated using almost infinite reactant c...
Thiol-functionalized organosilica microspheres were synthesized via a two-step process: (1) acid-cat...
Colloidal silica (silica sol) nanoparticles were synthesized by ammonia- and hydrochloric acid-catal...
This dissertation deals with two groups of silica-based composite materials, namely organic/silica c...
Porous hollow silica particles possess promising applications in many fields, ranging from drug deli...
The cyclohexane−igepal inverse microemulsion, comprehensively established for the synthesis of silic...