Compartmentalized structures widely exist in cellular systems (organelles) and perform essential functions in smart composite materials (microcapsules, vasculatures, and micelles) to provide localized functionality and enhance materials’ compatibility. An entirely water-free compartmentalization system is of significant value to the materials community as nonaqueous conditions are critical to packaging microcapsules with water-free hydrophilic payloads while avoiding energy-intensive drying steps. Few nonaqueous encapsulation techniques are known, especially when considering just the scalable processes that operate in batch mode. Herein, we report a robust oil-in-oil Pickering emulsion system that is compatible with nonaqueous interfacial r...
Microcapsules for controlled chemical release and uptake are important in many industrial applicatio...
Ionotropic gelation has been an attractive method for the fabrication of biopolymeric oil-core micro...
A two-step method to encapsulate an oil core with an impermeable shell has been developed. A thin me...
Efficient encapsulation of tetraethylenepentamine (TEPA), as an example aliphatic amine, was achieve...
International audienceMicrocapsules obtained by interfacial polycondensation froman original system ...
We present a multipurpose technology to encapsulate hydrophobic substances in micron-sized emulsion ...
In this contribution, we present the silica microencapsulation of hydrophilic compounds by templatin...
Compartmentalized microcapsules are useful for the release of multiple cargos in medicine, agricultu...
The design of biocompatible multiple emulsions is an important challenge in the field of controlled ...
We report a microencapsulation procedure based on rapid solvent evaporation to prepare microcapsules...
Emulsions are mixtures of two immiscible liquids in which droplets of one are dispersed in a continu...
Emulsions are mixtures of two immiscible liquids in which droplets of one are dispersed in a continu...
A two-step method to encapsulate an oil core with an impermeable shell has been developed. A thin me...
Microcapsules for controlled chemical release and uptake are important in many industrial applicatio...
Ionotropic gelation has been an attractive method for the fabrication of biopolymeric oil-core micro...
A two-step method to encapsulate an oil core with an impermeable shell has been developed. A thin me...
Efficient encapsulation of tetraethylenepentamine (TEPA), as an example aliphatic amine, was achieve...
International audienceMicrocapsules obtained by interfacial polycondensation froman original system ...
We present a multipurpose technology to encapsulate hydrophobic substances in micron-sized emulsion ...
In this contribution, we present the silica microencapsulation of hydrophilic compounds by templatin...
Compartmentalized microcapsules are useful for the release of multiple cargos in medicine, agricultu...
The design of biocompatible multiple emulsions is an important challenge in the field of controlled ...
We report a microencapsulation procedure based on rapid solvent evaporation to prepare microcapsules...
Emulsions are mixtures of two immiscible liquids in which droplets of one are dispersed in a continu...
Emulsions are mixtures of two immiscible liquids in which droplets of one are dispersed in a continu...
A two-step method to encapsulate an oil core with an impermeable shell has been developed. A thin me...
Microcapsules for controlled chemical release and uptake are important in many industrial applicatio...
Ionotropic gelation has been an attractive method for the fabrication of biopolymeric oil-core micro...
A two-step method to encapsulate an oil core with an impermeable shell has been developed. A thin me...