Nanostructured systems constitute versatile carriers with multiple functions engineered in a nanometric space. Yet, such multimodality often requires adapting the chemistry of the nanostructure to the properties of the hosted functional molecules. Here, we show the preparation of core-shell Pluronic-organosilica "PluOS" nanoparticles with the use of a library of organosilane precursors. The precursors are obtained via a fast and quantitative click reaction, starting from cost-effective reagents such as diamines and an isocyanate silane derivative, and they condensate in building blocks characterized by a balance between hydrophobic and H-bond-rich domains. As nanoscopic probes for local polarity, oxygen permeability, and solvating propertie...
Traditionally, organosilica nanoparticles have been prepared inside micelles with an external silica...
We report on the synthesis and characterization of water soluble stimuli responsive organosilica hyb...
The application of nanomaterials is regarded nowadays as a highly promising approach for overcoming ...
Nanostructured systems constitute versatile carriers with multiple functions engineered in a nanomet...
In this article, a new type of core–shell nanoparticle is introduced. In contrast to most reported c...
Silica nanoparticles (NPs) are versatile nanomaterials, which are safe with respect to biomedical ap...
[EN] A novel type of hybrid material based on a PLGA nanoparticle core and a redox-responsive amorph...
We report herein the preparation of mixed periodic mesoporous organosilica nanoparticles (E-Pn 75/25...
The development of smart nanoparticles (NPs) that encode responsive features in the structural frame...
In this article, we report a novel, nanoprecipitation-based method for preparing silica nanoparticle...
Organosilica nanoparticles that contain responsive organic building blocks as constitutive component...
A novel type of hybrid material based on a PLGA nanoparticle core and a redox-responsive amorphous o...
AbstractSilica nanoparticles have been prepared from tetraethylorthosilicate dissolved in ethanol fo...
Core-shell structures containing active materials can be fabricated using almost infinite reactant c...
A facile self-assembly method is described to prepare PEGylated silica nanocarriers using hydrophobi...
Traditionally, organosilica nanoparticles have been prepared inside micelles with an external silica...
We report on the synthesis and characterization of water soluble stimuli responsive organosilica hyb...
The application of nanomaterials is regarded nowadays as a highly promising approach for overcoming ...
Nanostructured systems constitute versatile carriers with multiple functions engineered in a nanomet...
In this article, a new type of core–shell nanoparticle is introduced. In contrast to most reported c...
Silica nanoparticles (NPs) are versatile nanomaterials, which are safe with respect to biomedical ap...
[EN] A novel type of hybrid material based on a PLGA nanoparticle core and a redox-responsive amorph...
We report herein the preparation of mixed periodic mesoporous organosilica nanoparticles (E-Pn 75/25...
The development of smart nanoparticles (NPs) that encode responsive features in the structural frame...
In this article, we report a novel, nanoprecipitation-based method for preparing silica nanoparticle...
Organosilica nanoparticles that contain responsive organic building blocks as constitutive component...
A novel type of hybrid material based on a PLGA nanoparticle core and a redox-responsive amorphous o...
AbstractSilica nanoparticles have been prepared from tetraethylorthosilicate dissolved in ethanol fo...
Core-shell structures containing active materials can be fabricated using almost infinite reactant c...
A facile self-assembly method is described to prepare PEGylated silica nanocarriers using hydrophobi...
Traditionally, organosilica nanoparticles have been prepared inside micelles with an external silica...
We report on the synthesis and characterization of water soluble stimuli responsive organosilica hyb...
The application of nanomaterials is regarded nowadays as a highly promising approach for overcoming ...