Highly uniform amide-based molecularly imprinted polymer (MIP) particles containing CO2-philic cavities decorated with amide groups were produced using membrane emulsification and subsequent suspension polymerisation. The organic phase containing acrylamide (functional monomer), oxalic acid (dummy template), ethylene glycol dimethacrylate (crosslinker) and azobisisobutyronitrile (initiator) dissolved in a 50/50 mixture (by volume) of acetonitrile and toluene (porogenic solvents) was injected through a microengineered nickel membrane with a pore diameter of 20 μm and a pore spacing of 200 μm into agitated 0.5 wt% aqueous solution of poly(vinyl alcohol) to form droplets that have been polymerised at 60 °C for 3 h. The volume median diameter o...
A novel low-concentration CO2 capture material (PEI/MCS) was developed by loading polyethylenimine (...
Carbon dioxide (CO2) emissions resulting from combustion of fossil based fuels increasing the atmosp...
A series of poly[methacrylamide-co-(ethylene glycol dimethacrylate)] (poly(MAAM-co-EGDMA)) porous po...
Highly uniform amide-based molecularly imprinted polymer (MIP) particles containing CO2-philic cavit...
Novel spherical molecularly imprinted polymer (MIP) particles containing amide-decorated nanocavitie...
Production of functional porous polymeric particles with CO2 recognition properties and tuned morpho...
Highly selective molecularly imprinted poly[acrylamide-co-(ethyleneglycol dimethacrylate)] polymer p...
AbstractNovel spherical molecularly imprinted polymer (MIP) particles containing amide-decorated nan...
Production of spherical molecularly imprinted polymeric particles containing CO2-philic nanocavitie
Parametric investigation of CO2-MIPs production using suspension polymerisation metho
Manufacturing polymeric capsules for CO2 capture using microfluidic emulsification and on-the-fly ph...
The most commercially viable capture method in carbon capture and storage (CCS) has been attributed ...
Porous polymeric adsorbents for CO2 capture (HCP-MAAMs) were fabricated by co-polymerisation of meth...
Membrane separation is potential alternative technology for liquid amine scrubbing in CO2 capture at...
Synthesis and characterization of porous polymer-based adsorbents for CO2 capture [Poster
A novel low-concentration CO2 capture material (PEI/MCS) was developed by loading polyethylenimine (...
Carbon dioxide (CO2) emissions resulting from combustion of fossil based fuels increasing the atmosp...
A series of poly[methacrylamide-co-(ethylene glycol dimethacrylate)] (poly(MAAM-co-EGDMA)) porous po...
Highly uniform amide-based molecularly imprinted polymer (MIP) particles containing CO2-philic cavit...
Novel spherical molecularly imprinted polymer (MIP) particles containing amide-decorated nanocavitie...
Production of functional porous polymeric particles with CO2 recognition properties and tuned morpho...
Highly selective molecularly imprinted poly[acrylamide-co-(ethyleneglycol dimethacrylate)] polymer p...
AbstractNovel spherical molecularly imprinted polymer (MIP) particles containing amide-decorated nan...
Production of spherical molecularly imprinted polymeric particles containing CO2-philic nanocavitie
Parametric investigation of CO2-MIPs production using suspension polymerisation metho
Manufacturing polymeric capsules for CO2 capture using microfluidic emulsification and on-the-fly ph...
The most commercially viable capture method in carbon capture and storage (CCS) has been attributed ...
Porous polymeric adsorbents for CO2 capture (HCP-MAAMs) were fabricated by co-polymerisation of meth...
Membrane separation is potential alternative technology for liquid amine scrubbing in CO2 capture at...
Synthesis and characterization of porous polymer-based adsorbents for CO2 capture [Poster
A novel low-concentration CO2 capture material (PEI/MCS) was developed by loading polyethylenimine (...
Carbon dioxide (CO2) emissions resulting from combustion of fossil based fuels increasing the atmosp...
A series of poly[methacrylamide-co-(ethylene glycol dimethacrylate)] (poly(MAAM-co-EGDMA)) porous po...