We report the design and synthesis of an amide functionalized microporous organic polymer (Am-MOP) prepared from trimesic acid and p-phenylenediamine using thionyl chloride as a reagent. Polar amide (CONH) functional groups act as a linking unit between the node and spacer and constitute the pore wall of the continuous polymeric network. The strong covalent bonds between the building blocks (trimesic acid and p-phenylenediamine) through amide bond linkages provide high thermal and chemical stability to Am-MOP. The presence of a highly polar pore surface allows selective CO2 uptake at 195 K over other gases such as N-2, Ar, and O-2. The CO2 molecule interacts with amide functional groups via Lewis acid base type interactions as demonstrated ...
Conjugated microporous polymers are a new class of porous materials with an extended p-conjugation i...
Two microporous conjugated polymers with extended phenylene backbones have been synthesized through ...
Microporous organic polymers (MOPs) are promising materials for gas sorption because of their intrin...
We report the design and synthesis of an amide functionalized microporous organic polymer (Am-MOP) p...
We report the design and synthesis of an amide functionalized microporous organic polymer (Am-MOP) p...
Microporous organic polymers (MOPs) are porous materials. Owing to their high surface area, tunable ...
CO2 capture is very important to reduce the CO2 concentration in atmosphere. Herein, we report the p...
We report here the carbon dioxide sorption properties for a series of conjugated microporous polymer...
The largest obstacles for landfill/flue gas separation using microporous materials are small adsorpt...
Tailored, Ph, Si, and N as center species on microporous organic polymers (MPOPs), Ph-MPOP, Si-MPOP,...
We review the design and use of microporous polymers for pre- and post-combustion capture of CO2. Mi...
Microporous organic polymers (MOPs) with internal pores less than 2 nm have potential use in gas sep...
The research described in this thesis relates to the development and optimisation of a novel polymer...
In this work, a series of microporous aminal-linked polymers (MALPs) are designed and prepared throu...
© 2019 American Chemical Society. Porous polymeric adsorbents for CO2 capture (HCP-MAAMs) were fabri...
Conjugated microporous polymers are a new class of porous materials with an extended p-conjugation i...
Two microporous conjugated polymers with extended phenylene backbones have been synthesized through ...
Microporous organic polymers (MOPs) are promising materials for gas sorption because of their intrin...
We report the design and synthesis of an amide functionalized microporous organic polymer (Am-MOP) p...
We report the design and synthesis of an amide functionalized microporous organic polymer (Am-MOP) p...
Microporous organic polymers (MOPs) are porous materials. Owing to their high surface area, tunable ...
CO2 capture is very important to reduce the CO2 concentration in atmosphere. Herein, we report the p...
We report here the carbon dioxide sorption properties for a series of conjugated microporous polymer...
The largest obstacles for landfill/flue gas separation using microporous materials are small adsorpt...
Tailored, Ph, Si, and N as center species on microporous organic polymers (MPOPs), Ph-MPOP, Si-MPOP,...
We review the design and use of microporous polymers for pre- and post-combustion capture of CO2. Mi...
Microporous organic polymers (MOPs) with internal pores less than 2 nm have potential use in gas sep...
The research described in this thesis relates to the development and optimisation of a novel polymer...
In this work, a series of microporous aminal-linked polymers (MALPs) are designed and prepared throu...
© 2019 American Chemical Society. Porous polymeric adsorbents for CO2 capture (HCP-MAAMs) were fabri...
Conjugated microporous polymers are a new class of porous materials with an extended p-conjugation i...
Two microporous conjugated polymers with extended phenylene backbones have been synthesized through ...
Microporous organic polymers (MOPs) are promising materials for gas sorption because of their intrin...