Core-shell microcapsules consisting of a titanium dioxide shell and a hydrophobic solvent core have been prepared with diameters of a few micrometers and a narrow size distribution using a simple and fast airbrush technique. These microcapsules were prepared at room temperature in a single-step process in which an oil with a dissolved titanium alkoxide precursor was forced together with an aqueous solution, containing a surface-active polymer, through a narrow spray nozzle using a nitrogen gas propellant. Several different parameters of chemical, physical, and processing origin were investigated to find an optimal recipe. Two different alkanes, one ketone, and four alcohols were tested and evaluated as core materials, alone or together with...
Microencapsulation technology has been increasingly applied toward the development of self-healing p...
Two technologies were studied to produce microcapsules for different application. Interfacial polyme...
Delivery systems with low-permeability barriers and controllable release are crucial for the encapsu...
Core-shell microcapsules consisting of a titanium dioxide shell and a hydrophobic solvent core have ...
Copyright © 2014 Daisuke Nakamura et al. This is an open access article distributed under the Creati...
Biocompatible microcapsules with a water core are widely used to encapsulate hydrophilic actives. He...
SiO2-based microcapsules containing hydrophobic molecules exhibited potential applications such as e...
Encapsulation and use of capsules for controlled release has several applications in pharmaceutical...
Core-shell structures containing active materials can be fabricated using almost infinite reactant c...
Microencapsulation means applying a shell-like coating to encapsulate the contents of interest in a ...
The efficient encapsulation of active ingredients within formulated products and their controlled, t...
The optimum processing parameters required to synthesize, by hydrolysis of titanium isopropoxide (TI...
A procedure has been proposed for the preparation of capsules with shells composed of titanium dioxi...
Microencapsulation of small volatile chemicals remains an unsolved challenge for both industry and a...
In this work, silica microcapsules of different structures containing hydrophobic substances were pr...
Microencapsulation technology has been increasingly applied toward the development of self-healing p...
Two technologies were studied to produce microcapsules for different application. Interfacial polyme...
Delivery systems with low-permeability barriers and controllable release are crucial for the encapsu...
Core-shell microcapsules consisting of a titanium dioxide shell and a hydrophobic solvent core have ...
Copyright © 2014 Daisuke Nakamura et al. This is an open access article distributed under the Creati...
Biocompatible microcapsules with a water core are widely used to encapsulate hydrophilic actives. He...
SiO2-based microcapsules containing hydrophobic molecules exhibited potential applications such as e...
Encapsulation and use of capsules for controlled release has several applications in pharmaceutical...
Core-shell structures containing active materials can be fabricated using almost infinite reactant c...
Microencapsulation means applying a shell-like coating to encapsulate the contents of interest in a ...
The efficient encapsulation of active ingredients within formulated products and their controlled, t...
The optimum processing parameters required to synthesize, by hydrolysis of titanium isopropoxide (TI...
A procedure has been proposed for the preparation of capsules with shells composed of titanium dioxi...
Microencapsulation of small volatile chemicals remains an unsolved challenge for both industry and a...
In this work, silica microcapsules of different structures containing hydrophobic substances were pr...
Microencapsulation technology has been increasingly applied toward the development of self-healing p...
Two technologies were studied to produce microcapsules for different application. Interfacial polyme...
Delivery systems with low-permeability barriers and controllable release are crucial for the encapsu...