Microporous organic polymers (MOPs) are of potential significance for gas storage1,2,3, gas separation4 and low-dielectric applications5. Among many approaches for obtaining such materials, solution-processable MOPs derived from rigid and contorted macromolecular structures are promising because of their excellent mass transport and mass exchange capability. Here we show a class of amorphous MOP, prepared by [2+3] cycloaddition modification of a polymer containing an aromatic nitrile group with an azide compound, showing super-permeable characteristics and outstanding CO2 separation performance, even under polymer plasticization conditions such as CO2/light gas mixtures. This unprecedented result arises from the introduction of tetrazole gr...
Control of carbon dioxide emissions without significant penalties requires effective CO2 scrubbing f...
Thin-film composite (TFC) polymeric membranes have attracted increasing interest to meet the demands...
Microporous organic polymers (MOPs) are porous materials. Owing to their high surface area, tunable ...
Microporous organic polymers (MOPs) with internal pores less than 2 nm have potential use in gas sep...
This Concept examines strategies to design advanced polymers with high CO2 permeability and high CO2...
Processing of biogas, flue and natural gas is a highly relevant industrial process because of econom...
The largest obstacles for landfill/flue gas separation using microporous materials are small adsorpt...
Conventional CO2 separation in the petrochemical industry via cryogenic distillation or amine-based ...
The evolution of micropores in polymer membranes helps accelerate mass transport phenomena on a sub-...
The use of porous sorbents for physisorptive capture of CO2 from gas mixtures has been deemed attrac...
Mixed matrix membranes (MMMs) have gained great attention for the efficient CO2 removal from raw nat...
Rising carbon dioxide (CO2) levels in the atmosphere are recognized as a threat to atmospheric stabi...
The performance of polymeric membranes is often limited by a trade-off between membrane permeability...
© 2017 Dr. Ke Jr XieGlobal warming and climate change concerns have triggered global efforts to redu...
Membrane technology has gained great attention as one of the promising strategies for carbon capture...
Control of carbon dioxide emissions without significant penalties requires effective CO2 scrubbing f...
Thin-film composite (TFC) polymeric membranes have attracted increasing interest to meet the demands...
Microporous organic polymers (MOPs) are porous materials. Owing to their high surface area, tunable ...
Microporous organic polymers (MOPs) with internal pores less than 2 nm have potential use in gas sep...
This Concept examines strategies to design advanced polymers with high CO2 permeability and high CO2...
Processing of biogas, flue and natural gas is a highly relevant industrial process because of econom...
The largest obstacles for landfill/flue gas separation using microporous materials are small adsorpt...
Conventional CO2 separation in the petrochemical industry via cryogenic distillation or amine-based ...
The evolution of micropores in polymer membranes helps accelerate mass transport phenomena on a sub-...
The use of porous sorbents for physisorptive capture of CO2 from gas mixtures has been deemed attrac...
Mixed matrix membranes (MMMs) have gained great attention for the efficient CO2 removal from raw nat...
Rising carbon dioxide (CO2) levels in the atmosphere are recognized as a threat to atmospheric stabi...
The performance of polymeric membranes is often limited by a trade-off between membrane permeability...
© 2017 Dr. Ke Jr XieGlobal warming and climate change concerns have triggered global efforts to redu...
Membrane technology has gained great attention as one of the promising strategies for carbon capture...
Control of carbon dioxide emissions without significant penalties requires effective CO2 scrubbing f...
Thin-film composite (TFC) polymeric membranes have attracted increasing interest to meet the demands...
Microporous organic polymers (MOPs) are porous materials. Owing to their high surface area, tunable ...