CO2 accumulation in confined spaces represents an increasing environmental and health problem. Trace CO2 capture remains an unmet challenge because human health risks can occur at 1000 parts per million (ppm), a level that challenges current generations of chemisorbents (high energy footprint and slow kinetics) and physisorbents (poor selectivity for CO2, especially versus water vapor, and/or poor hydrolytic stability). Here, dynamic breakthrough gas experiments conducted upon the ultramicroporous material SIFSIX-18-Ni- reveal trace (1000 to 10,000 ppm) CO2 removal from humid air. We attribute the performance of SIFSIX-18-Ni- to two factors that are usually mutually exclusive: a new type of strong CO2 binding site and hydrophobicity similar...
Highly selective CO2 capture from flue gas based on adsorption technology is among the largest chall...
Capturing carbon dioxide (CO2) from flue gases with porous materials has been considered as a viable...
In order to mitigate climate change driven by the observed high levels of carbon dioxide (CO2) in th...
peer-reviewedCO2 accumulation in confined spaces represents an increasing environmental and health p...
International audienceDirect air capture is regarded as a plausible alternate approach that, if econ...
Sequestration of CO<sub>2</sub>, either from gas mixtures or directly from air (direct air capture),...
peer-reviewedRemoval of CO2 from CO gas mixtures is a necessary but challenging step during producti...
This review paper focuses on various gas processing technologies and materials that efficiently capt...
Due to their high surface areas and structural tunability, porous metal-organic materials, MOMs, hav...
peer-reviewedGlobal atmospheric CO2 levels are currently 409 ppm, an increase of 130 ppm since the p...
peer-reviewedThe trade-off between selectivity and adsorption capacity with porous materials is a ma...
Climate deterioration is closely related to the CO2 concentration in the atmosphere, which is consid...
The escalating level of CO2 in the atmosphere is one of the most critical environmental issues of ou...
Effective capture of trace CO2 in atmosphere or confined spaces to ensure human beings safety draw a...
Microporous carbons were prepared starting from a series of benzene polycarboxylic acids following t...
Highly selective CO2 capture from flue gas based on adsorption technology is among the largest chall...
Capturing carbon dioxide (CO2) from flue gases with porous materials has been considered as a viable...
In order to mitigate climate change driven by the observed high levels of carbon dioxide (CO2) in th...
peer-reviewedCO2 accumulation in confined spaces represents an increasing environmental and health p...
International audienceDirect air capture is regarded as a plausible alternate approach that, if econ...
Sequestration of CO<sub>2</sub>, either from gas mixtures or directly from air (direct air capture),...
peer-reviewedRemoval of CO2 from CO gas mixtures is a necessary but challenging step during producti...
This review paper focuses on various gas processing technologies and materials that efficiently capt...
Due to their high surface areas and structural tunability, porous metal-organic materials, MOMs, hav...
peer-reviewedGlobal atmospheric CO2 levels are currently 409 ppm, an increase of 130 ppm since the p...
peer-reviewedThe trade-off between selectivity and adsorption capacity with porous materials is a ma...
Climate deterioration is closely related to the CO2 concentration in the atmosphere, which is consid...
The escalating level of CO2 in the atmosphere is one of the most critical environmental issues of ou...
Effective capture of trace CO2 in atmosphere or confined spaces to ensure human beings safety draw a...
Microporous carbons were prepared starting from a series of benzene polycarboxylic acids following t...
Highly selective CO2 capture from flue gas based on adsorption technology is among the largest chall...
Capturing carbon dioxide (CO2) from flue gases with porous materials has been considered as a viable...
In order to mitigate climate change driven by the observed high levels of carbon dioxide (CO2) in th...