The cross-coupling reaction of 1,3,5-triethynylbenzene with terephthaloyl chloride gives a novel ynone-linked porous organic polymer. Tethering alkyl amine species on the polymer induces chemisorption of CO2 as revealed by the studies of ex situ infrared spectroscopy. By tuning the amine loading content on the polymer, relatively high CO2 adsorption capacities, high CO2-over-N2 selectivity, and moderate isosteric heat (Qst) of adsorption of CO2 can be achieved. Such amine-modified polymers with balanced physisorption and chemisorption of CO2 are ideal sorbents for post-combustion capture of CO2 offering both high separation and high energy efficiencies
Hypercrosslinked polymers (HCPs) are very promising for large-scale applications due to their easy p...
Increasing awareness of the influence of greenhouse gases on global climate change has led to recent...
The nitrogen-rich polymer network (MF/PAM) was synthesized through interpenetration between the mole...
The cross-coupling reaction of 1,3,5-triethynylbenzene with terephthaloyl chloride gives a novel yno...
We review the design and use of microporous polymers for pre- and post-combustion capture of CO2. Mi...
Porous materials have always attracted high scientific interest because of their outstanding perform...
Control of carbon dioxide emissions without significant penalties requires effective CO2 scrubbing f...
The introduction of polyamines in porous polymer networks results in significant enhancement of CO2-...
CO2 capture is very important to reduce the CO2 concentration in atmosphere. Herein, we report the p...
A large number of scientific investigations are needed for developing a sustainable solid sorbent ma...
In this report, magnetic porous polymer functionalized with pentaethylenehexamine (mP-PEHA) was test...
© 2019 American Chemical Society. Porous polymeric adsorbents for CO2 capture (HCP-MAAMs) were fabri...
AbstractAmine solvents have long been used by industry as absorbents for acid gas (CO2, H2S) removal...
Synthesis and characterization of porous polymer-based adsorbents for CO2 capture [Abstract
Two hydroxy-functionalized hyper-cross-linked ultra-microporous compounds have been synthesized by F...
Hypercrosslinked polymers (HCPs) are very promising for large-scale applications due to their easy p...
Increasing awareness of the influence of greenhouse gases on global climate change has led to recent...
The nitrogen-rich polymer network (MF/PAM) was synthesized through interpenetration between the mole...
The cross-coupling reaction of 1,3,5-triethynylbenzene with terephthaloyl chloride gives a novel yno...
We review the design and use of microporous polymers for pre- and post-combustion capture of CO2. Mi...
Porous materials have always attracted high scientific interest because of their outstanding perform...
Control of carbon dioxide emissions without significant penalties requires effective CO2 scrubbing f...
The introduction of polyamines in porous polymer networks results in significant enhancement of CO2-...
CO2 capture is very important to reduce the CO2 concentration in atmosphere. Herein, we report the p...
A large number of scientific investigations are needed for developing a sustainable solid sorbent ma...
In this report, magnetic porous polymer functionalized with pentaethylenehexamine (mP-PEHA) was test...
© 2019 American Chemical Society. Porous polymeric adsorbents for CO2 capture (HCP-MAAMs) were fabri...
AbstractAmine solvents have long been used by industry as absorbents for acid gas (CO2, H2S) removal...
Synthesis and characterization of porous polymer-based adsorbents for CO2 capture [Abstract
Two hydroxy-functionalized hyper-cross-linked ultra-microporous compounds have been synthesized by F...
Hypercrosslinked polymers (HCPs) are very promising for large-scale applications due to their easy p...
Increasing awareness of the influence of greenhouse gases on global climate change has led to recent...
The nitrogen-rich polymer network (MF/PAM) was synthesized through interpenetration between the mole...