© 2015 The Royal Society of Chemistry. Stable nonaqueous high internal phase emulsions (HIPEs) were prepared and thermally polymerized to yield poly(HIPEs). The internal phase accounting for 80 vol% of the HIPE consisted of a deep-eutectic solvent (DES) while the continuous one comprised styrene and divinyl benzene in a 10:1 molar ratio. DESs with different viscosities were used as an internal phase: choline chloride combined with urea, glycerol or ethylene glycol in a 1:2, salt:hydrogen bond donor molar ratio, respectively. HIPEs were stabilized with different amounts of the surfactant Span 60 (10, 20 and 50 wt% with respect to the total amount of monomers). DESs viscosity and the amount of surfactant employed impact the morphology and mec...
The type of porogen added to the continuous phase of HIPEs containing divinylbenzene strongly in¯uen...
Water-in-oil high-internal-phase emulsions (HIPEs), containing 4-nitrophenyl acrylate and 2,4,6-tric...
An oil-in-water high internal phase emulsion consisting of acrylic acid, water, and a crosslinker (N...
Stable nonaqueous high internal phase emulsions (HIPEs) were prepared and thermally polymerized to y...
This study focuses on developing non-aqueous high internal phase emulsions (HIPEs) based on ionic li...
Porous monolithic polymers are objects of many studies recently due to their wide applicability. Esp...
Highly porous monoliths were synthesised using glycidyl methacrylate (GMA) and divinylbenzene in the...
Macroporous polymer monoliths with interconnected structures have attracted considerable interests ...
AbstractThe use of high internal phase emulsions (HIPEs) as templates to create highly porous materi...
The synthesis of a series of poly(ethylene oxide)-b-polystyrene copolymers with different block leng...
Interconnected microcellular polymeric monoliths having unexpected high mechanical strength have bee...
International audienceStable water-in-oil (w/o) high internal phase emulsions (HIPEs) having an inte...
In 1982, a high internal phase emulsion (HIPE) polymerization process to manufacture microcellular, ...
Preparation of highly porous (up to 80% pore volume) open-cellular monolithic cross-linked polymers ...
Macroporous polymer monoliths prepared from high internal phase emulsions (HIPEs) can be found in va...
The type of porogen added to the continuous phase of HIPEs containing divinylbenzene strongly in¯uen...
Water-in-oil high-internal-phase emulsions (HIPEs), containing 4-nitrophenyl acrylate and 2,4,6-tric...
An oil-in-water high internal phase emulsion consisting of acrylic acid, water, and a crosslinker (N...
Stable nonaqueous high internal phase emulsions (HIPEs) were prepared and thermally polymerized to y...
This study focuses on developing non-aqueous high internal phase emulsions (HIPEs) based on ionic li...
Porous monolithic polymers are objects of many studies recently due to their wide applicability. Esp...
Highly porous monoliths were synthesised using glycidyl methacrylate (GMA) and divinylbenzene in the...
Macroporous polymer monoliths with interconnected structures have attracted considerable interests ...
AbstractThe use of high internal phase emulsions (HIPEs) as templates to create highly porous materi...
The synthesis of a series of poly(ethylene oxide)-b-polystyrene copolymers with different block leng...
Interconnected microcellular polymeric monoliths having unexpected high mechanical strength have bee...
International audienceStable water-in-oil (w/o) high internal phase emulsions (HIPEs) having an inte...
In 1982, a high internal phase emulsion (HIPE) polymerization process to manufacture microcellular, ...
Preparation of highly porous (up to 80% pore volume) open-cellular monolithic cross-linked polymers ...
Macroporous polymer monoliths prepared from high internal phase emulsions (HIPEs) can be found in va...
The type of porogen added to the continuous phase of HIPEs containing divinylbenzene strongly in¯uen...
Water-in-oil high-internal-phase emulsions (HIPEs), containing 4-nitrophenyl acrylate and 2,4,6-tric...
An oil-in-water high internal phase emulsion consisting of acrylic acid, water, and a crosslinker (N...