Efficient CO2 capture is indispensable for achieving a carbon-neutral society while maintaining a high quality of life. Since the discovery that ionic liquids (ILs; room-temperature molten salts) can absorb CO2, various solvents composed of molecular ions have been studied. However, it is challenging to observe the properties of each isolated ion component to control the function of ILs as they are mixtures of ions. Finding the optimal cation–anion combination for the CO2 absorbent from their enormous chemical space had been impossible in a practical sense. This study applied electronic structure informatics to explore ILs with high CO2 solubility from 402,114 IL candidates. The feature variables were determined by a set of cheap quantum ch...
Owing to the stringent environmental legislations, CO2 capture and sequestration is one of the viabl...
The nonvolatility, structure-tunability and high CO2 uptake capacity render ionic liquids (ILs) the ...
The nonvolatility, structure-tunability and high CO2 uptake capacity render ionic liquids (ILs) the ...
Ionic Liquids (ILs) provide a promising solution for CO$_2$ capture and storage to mitigate global w...
Ionic liquids (ILs) provide a promising solution for CO2 capture and storage to mitigate global warm...
This is the final report for project DE-FG26-04NT42122 'Design and Evaluation of Ionic Liquids as No...
Ionic liquids (ILs) are efficient solvents for the selective removal of CO2 from flue gas. Conventio...
Ionic liquids are a new and exciting class of compound that have the potential to overcome many of t...
Greenhouse gases emission is known as the main factor of climate change, and carbon dioxide (CO2) ma...
We present computational studies of CO2 sorption in two different classes of ionic liquid. The addit...
In order to design ionic liquids as absorbents for gas separation, a systematic computer-aided ionic...
Ionic liquids (ILs) are efficient solvents for the selective removal of CO2 from flue gas. Conventio...
The discovery of materials that combine selectively, controllably, and reversibly with CO<sub>2</sub...
The absorption of CO2 is of importance in carbon capture, utilization, and storage technology for gr...
The absorption of CO2 is of importance in carbon capture, utilization, and storage technology for gr...
Owing to the stringent environmental legislations, CO2 capture and sequestration is one of the viabl...
The nonvolatility, structure-tunability and high CO2 uptake capacity render ionic liquids (ILs) the ...
The nonvolatility, structure-tunability and high CO2 uptake capacity render ionic liquids (ILs) the ...
Ionic Liquids (ILs) provide a promising solution for CO$_2$ capture and storage to mitigate global w...
Ionic liquids (ILs) provide a promising solution for CO2 capture and storage to mitigate global warm...
This is the final report for project DE-FG26-04NT42122 'Design and Evaluation of Ionic Liquids as No...
Ionic liquids (ILs) are efficient solvents for the selective removal of CO2 from flue gas. Conventio...
Ionic liquids are a new and exciting class of compound that have the potential to overcome many of t...
Greenhouse gases emission is known as the main factor of climate change, and carbon dioxide (CO2) ma...
We present computational studies of CO2 sorption in two different classes of ionic liquid. The addit...
In order to design ionic liquids as absorbents for gas separation, a systematic computer-aided ionic...
Ionic liquids (ILs) are efficient solvents for the selective removal of CO2 from flue gas. Conventio...
The discovery of materials that combine selectively, controllably, and reversibly with CO<sub>2</sub...
The absorption of CO2 is of importance in carbon capture, utilization, and storage technology for gr...
The absorption of CO2 is of importance in carbon capture, utilization, and storage technology for gr...
Owing to the stringent environmental legislations, CO2 capture and sequestration is one of the viabl...
The nonvolatility, structure-tunability and high CO2 uptake capacity render ionic liquids (ILs) the ...
The nonvolatility, structure-tunability and high CO2 uptake capacity render ionic liquids (ILs) the ...