By using emulsions with high volume fractions of internal phase as polymerisation media porous copolymers of acrylic acid and acrylamide, cross-linked by methylenebisacrylamide, were prepared. The ratio of acrylic acid to acrylamide were varied (molar ratios 70:30, 50:50, 30:70) in order to yield polymers with various loading of acidic functional groups. Porous polymers with an open-cellular architecture were obtained with void diameters between 2.8 μm and 3.9 μm and with interconnecting pores approx. 0.3 μm in diameter. The chemical composition of the polymers influenced the conversion degrees during the process of functionalisation of acidic groups to acid chloride, being the highest in the case of polymer with the lowest content of acril...
This paper deals with the preparation of new poly(High Internal Phase Emulsion) [polyHIPE] materials...
We report the preparation of hierarchically porous polymers containing fully interconnected and cont...
AbstractThe use of high internal phase emulsions (HIPEs) as templates to create highly porous materi...
By using emulsions with high volume fractions of internal phase as polymerisation media porous copol...
Highly porous poly (acrylic acid) (P(AA)) with tunable pore structure was prepared through polymeriz...
An oil-in-water high internal phase emulsion consisting of acrylic acid, water, and a crosslinker (N...
Interconnected macroporous polymers were prepared by copolymerizing methyl acrylate (MA) via Pickeri...
The characteristics of two types of porous polymers: poly(methyl methacrylate) and copolymers of met...
Water-in-oil high-internal-phase emulsions (HIPEs), containing 4-nitrophenyl acrylate and 2,4,6-tric...
Highly interconnected hydrophilic polymers were prepared through the polymerisation of (paraffin-oil...
In this work the synthesis of a crosslinked macroporous copolymer was effected from methyl methacryl...
ABSTRACT: PolyHIPE are highly porous, open-pore, cross-linked polymers synthesized within high inter...
Porous functional polymer supports are a class of material of wide interest due to the possibility o...
A novel method for the simultaneous preparation of a large number of porous polymeric structures wit...
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 report the preparation of hierarchically porous polymers containing fully interconnected and cont...
AbstractThe use of high internal phase emulsions (HIPEs) as templates to create highly porous materi...
By using emulsions with high volume fractions of internal phase as polymerisation media porous copol...
Highly porous poly (acrylic acid) (P(AA)) with tunable pore structure was prepared through polymeriz...
An oil-in-water high internal phase emulsion consisting of acrylic acid, water, and a crosslinker (N...
Interconnected macroporous polymers were prepared by copolymerizing methyl acrylate (MA) via Pickeri...
The characteristics of two types of porous polymers: poly(methyl methacrylate) and copolymers of met...
Water-in-oil high-internal-phase emulsions (HIPEs), containing 4-nitrophenyl acrylate and 2,4,6-tric...
Highly interconnected hydrophilic polymers were prepared through the polymerisation of (paraffin-oil...
In this work the synthesis of a crosslinked macroporous copolymer was effected from methyl methacryl...
ABSTRACT: PolyHIPE are highly porous, open-pore, cross-linked polymers synthesized within high inter...
Porous functional polymer supports are a class of material of wide interest due to the possibility o...
A novel method for the simultaneous preparation of a large number of porous polymeric structures wit...
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 report the preparation of hierarchically porous polymers containing fully interconnected and cont...
AbstractThe use of high internal phase emulsions (HIPEs) as templates to create highly porous materi...