Carbonaceous nanomaterials with uniform pore size are potential solid sorbents in various industrial applications, such as gas purification and water treatment, because of their easily tunable pore diameter and morphology. However, the carbon-based sorbents are greatly limited in CO<sub>2</sub> capture, because of their weak interaction with CO<sub>2</sub> (physical adsorption in nature). This work reports the amino functionalization of microsized and nanosized mesoporous carbons for CO<sub>2</sub> capture. Two strategies, i.e., physical impregnation with branched polyethylenimine (PEI) and chemical grafting of ethylenediamine, are used to functionalize mesoporous carbon microparticles (MCMs) with a particle size of 100–200 μm. The amine-gr...
Carbon dioxide (CO2) capture and storage have been suggested as an effective strategy to reduce glob...
A series of activated carbons were prepared by carbonization of polyaniline at different temperature...
By impregnating polyethylenimine (PEI) into silica mesocellular foam with the template remaining (MC...
Amine-impregnated mesoporous carbon sorbents have been considered one of the most promising sorbents...
A novel high efficiency nanocomposite sorbent for CO2 capture has been developed based on oligomeric...
A novel high efficiency nanocomposite sorbent for CO2 capture has been developed based on oligomeric...
High amine efficiency amine-modified silica adsorbents with fast adsorption rates have been develope...
An amine-grafted solid sorbent is a promising alternative to aqueous amine scrubbing for removing CO...
Functionalization of MCM-48 and SBA-15 mesoporous silicas with polyethylenimine (PEI) has been achie...
The design of effective CO2 capture materials is a current challenge. Here, we report the synthesis ...
Three mesoporous silica materials with different pore sizes (33 angstrom for small pore size MCM-41;...
The CO2 adsorption properties of hybrid organic–inorganic MCM-41 silicas with different particle siz...
A novel low-concentration CO2 capture material (PEI/MCS) was developed by loading polyethylenimine (...
Polyethylenimine (PEI) has been grafted on a 2D hexagonal mesostructured porous silica of MCM-41 typ...
Supported polyamines are promising candidates for the chemical adsorption of CO2, the performance of...
Carbon dioxide (CO2) capture and storage have been suggested as an effective strategy to reduce glob...
A series of activated carbons were prepared by carbonization of polyaniline at different temperature...
By impregnating polyethylenimine (PEI) into silica mesocellular foam with the template remaining (MC...
Amine-impregnated mesoporous carbon sorbents have been considered one of the most promising sorbents...
A novel high efficiency nanocomposite sorbent for CO2 capture has been developed based on oligomeric...
A novel high efficiency nanocomposite sorbent for CO2 capture has been developed based on oligomeric...
High amine efficiency amine-modified silica adsorbents with fast adsorption rates have been develope...
An amine-grafted solid sorbent is a promising alternative to aqueous amine scrubbing for removing CO...
Functionalization of MCM-48 and SBA-15 mesoporous silicas with polyethylenimine (PEI) has been achie...
The design of effective CO2 capture materials is a current challenge. Here, we report the synthesis ...
Three mesoporous silica materials with different pore sizes (33 angstrom for small pore size MCM-41;...
The CO2 adsorption properties of hybrid organic–inorganic MCM-41 silicas with different particle siz...
A novel low-concentration CO2 capture material (PEI/MCS) was developed by loading polyethylenimine (...
Polyethylenimine (PEI) has been grafted on a 2D hexagonal mesostructured porous silica of MCM-41 typ...
Supported polyamines are promising candidates for the chemical adsorption of CO2, the performance of...
Carbon dioxide (CO2) capture and storage have been suggested as an effective strategy to reduce glob...
A series of activated carbons were prepared by carbonization of polyaniline at different temperature...
By impregnating polyethylenimine (PEI) into silica mesocellular foam with the template remaining (MC...