Alcohol-containing polymer networks synthesized by Friedel–Crafts alkylation have surface areas of up to 1015 m2/g. Both racemic and chiral microporous binaphthol (BINOL) networks can be produced by a simple, one-step route. The BINOL networks show higher CO2 capture capacities than their naphthol counterparts under idealized, dry conditions. In the presence of water vapor, however, these BINOL networks adsorb less CO2 than more hydrophobic analogues, suggesting that idealized measurements may give a poor indication of performance under more realistic carbon capture conditions
Porous benzimidazole-based polymers (BILPs) have proven to be promising for carbon dioxide capture a...
Microporous organic polymers have been synthesised from aniline using Friedel–Crafts alkylation. Net...
Microporous organic polymers (MOPs) with internal pores less than 2 nm have potential use in gas sep...
Alcohol-containing polymer networks synthesized by Friedel–Crafts alkylation have surface areas of u...
We review the design and use of microporous polymers for pre- and post-combustion capture of CO2. Mi...
A new generation of porous polymer networks has been obtained in quantitative yield by reacting two ...
A series of benzyl alcohol (BA)-based hyper-cross-linked microporous polymers (HCPs) were designed a...
CO2 capture is very important to reduce the CO2 concentration in atmosphere. Herein, we report the p...
Nitrogen‐rich solid absorbents, which have been immensely tested for carbon dioxide capture, seem un...
Nitrogen-rich solid absorbents, which have been immensely tested for carbon dioxide capture, seem un...
We report here the carbon dioxide sorption properties for a series of conjugated microporous polymer...
Anthropogenic carbon dioxide emissions are thought to be one cause of global warming. Current method...
A new generation of porous polymer networks has been obtained in quantitative yield by reacting two ...
Solution-processable microporous polymers are promising materials for CO2 capture because of their l...
Two hydroxy-functionalized hyper-cross-linked ultra-microporous compounds have been synthesized by F...
Porous benzimidazole-based polymers (BILPs) have proven to be promising for carbon dioxide capture a...
Microporous organic polymers have been synthesised from aniline using Friedel–Crafts alkylation. Net...
Microporous organic polymers (MOPs) with internal pores less than 2 nm have potential use in gas sep...
Alcohol-containing polymer networks synthesized by Friedel–Crafts alkylation have surface areas of u...
We review the design and use of microporous polymers for pre- and post-combustion capture of CO2. Mi...
A new generation of porous polymer networks has been obtained in quantitative yield by reacting two ...
A series of benzyl alcohol (BA)-based hyper-cross-linked microporous polymers (HCPs) were designed a...
CO2 capture is very important to reduce the CO2 concentration in atmosphere. Herein, we report the p...
Nitrogen‐rich solid absorbents, which have been immensely tested for carbon dioxide capture, seem un...
Nitrogen-rich solid absorbents, which have been immensely tested for carbon dioxide capture, seem un...
We report here the carbon dioxide sorption properties for a series of conjugated microporous polymer...
Anthropogenic carbon dioxide emissions are thought to be one cause of global warming. Current method...
A new generation of porous polymer networks has been obtained in quantitative yield by reacting two ...
Solution-processable microporous polymers are promising materials for CO2 capture because of their l...
Two hydroxy-functionalized hyper-cross-linked ultra-microporous compounds have been synthesized by F...
Porous benzimidazole-based polymers (BILPs) have proven to be promising for carbon dioxide capture a...
Microporous organic polymers have been synthesised from aniline using Friedel–Crafts alkylation. Net...
Microporous organic polymers (MOPs) with internal pores less than 2 nm have potential use in gas sep...