Highly interconnected hydrophilic polymers were prepared through the polymerisation of (paraffin-oil)-in-water emulsion templates using internal phases below 74 vol%. These were stabilised by Tween 85 and contained acrylamide and N,N/-methylene bisacrylamide, as monomers, in the continuous water phase. The emulsification energy was increased, resulting in increased contact between emulsion droplets, allowing open cellular and highly interconnected structures to be achieved. This was coupled with a reduction in the internal phase volume allowing the obtainment of highly interconnected materials with excellent mechanical properties under compression, producing a Young's modulus of 490 ± 90 MPa for a material with 36 ± 3% porosity. It was al...
We present a study of the mechanical properties of porous polymer materials elaborated from the cont...
This paper discusses the formation of soft porous materials obtained by the polymerization of invers...
Herein we report a one-step method to prepare high internal water-phase double emulsions (W/O/W) via...
Highly interconnected hydrophilic polymers were prepared through the polymerisation of (paraffin-oil...
AbstractThe use of high internal phase emulsions (HIPEs) as templates to create highly porous materi...
Highly porous poly (acrylic acid) (P(AA)) with tunable pore structure was prepared through polymeriz...
Emulsion templating using high internal phase emulsions is an effective route to prepare low density...
Macroporous polymer monoliths with interconnected structures have attracted considerable interests ...
Emulsion templating is a method that enables the production of highly porous and interconnected poly...
This thesis describes a series of styrene (ST) and divinylbenzene (DVB) emulsion templated polymer f...
International audienceStable water-in-oil (w/o) high internal phase emulsions (HIPEs) having an inte...
Macroporous materials polymerized from high internal phase emulsions (PolyHIPEs) possess well-define...
Interconnected microcellular polymeric monoliths having unexpected high mechanical strength have bee...
Porous monolithic polymers are objects of many studies recently due to their wide applicability. Esp...
This paper deals with the preparation of new poly(High Internal Phase Emulsion) [polyHIPE] materials...
We present a study of the mechanical properties of porous polymer materials elaborated from the cont...
This paper discusses the formation of soft porous materials obtained by the polymerization of invers...
Herein we report a one-step method to prepare high internal water-phase double emulsions (W/O/W) via...
Highly interconnected hydrophilic polymers were prepared through the polymerisation of (paraffin-oil...
AbstractThe use of high internal phase emulsions (HIPEs) as templates to create highly porous materi...
Highly porous poly (acrylic acid) (P(AA)) with tunable pore structure was prepared through polymeriz...
Emulsion templating using high internal phase emulsions is an effective route to prepare low density...
Macroporous polymer monoliths with interconnected structures have attracted considerable interests ...
Emulsion templating is a method that enables the production of highly porous and interconnected poly...
This thesis describes a series of styrene (ST) and divinylbenzene (DVB) emulsion templated polymer f...
International audienceStable water-in-oil (w/o) high internal phase emulsions (HIPEs) having an inte...
Macroporous materials polymerized from high internal phase emulsions (PolyHIPEs) possess well-define...
Interconnected microcellular polymeric monoliths having unexpected high mechanical strength have bee...
Porous monolithic polymers are objects of many studies recently due to their wide applicability. Esp...
This paper deals with the preparation of new poly(High Internal Phase Emulsion) [polyHIPE] materials...
We present a study of the mechanical properties of porous polymer materials elaborated from the cont...
This paper discusses the formation of soft porous materials obtained by the polymerization of invers...
Herein we report a one-step method to prepare high internal water-phase double emulsions (W/O/W) via...