We performed a computational screening of previously reported porous molecular materials, including porous organic cages, cucurbiturils, cyclodextrins, and cryptophanes, for Xe/Kr separation. Our approach for rapid screening through analysis of single host molecules, rather than the solid state structure of the materials, is evaluated. We use a set of tools including in-house software for structural evaluations, electronic structure calculations for guest binding energies, and molecular dynamics and metadynamics simulations to study the effect of the hosts' flexibility upon guest diffusion. Our final results confirm that the CC3 cage molecule, previously reported as high performing for Xe/Kr separation, is the most promising of this class o...
The development of adsorption and membrane-based separation technologies toward more energy and cost...
This study shows that a range of separation applications for the MFM family of metal-organic framewo...
The efficient separation of xenon (Xe) and krypton (Kr) is one of the industrially important process...
We performed a computational screening of previously reported porous molecular materials, including ...
Accelerating progress in the discovery and deployment of advanced nanoporous materials relies on che...
Accelerating progress in the discovery and deployment of advanced nanoporous materials relies on che...
Porous organic cages have recently received much attention due to their synthetic tunability, soluti...
Metal-organic frameworks (MOFs) are porous crystals with the potential to improve many industrial ga...
International audienceNanoporous framework materials are a promising class of materials for energy-e...
Porous organic molecules have internal pores readily occupied by gases, solvent or other guests. The...
This thesis aims to improve the xenon/krypton separation using nanoporous materials. The primary obj...
Nanoporous materials, such as metal-organic frameworks (MOFs), have enormous internal surface areas....
The total world energy demand is predicted to rise significantly over the next few decades, primaril...
The cryogenic separation of noble gases is energy-intensive and expensive, especially when low conce...
Nuclear energy is among the most viable alternatives to our current fossil fuel-based energy economy...
The development of adsorption and membrane-based separation technologies toward more energy and cost...
This study shows that a range of separation applications for the MFM family of metal-organic framewo...
The efficient separation of xenon (Xe) and krypton (Kr) is one of the industrially important process...
We performed a computational screening of previously reported porous molecular materials, including ...
Accelerating progress in the discovery and deployment of advanced nanoporous materials relies on che...
Accelerating progress in the discovery and deployment of advanced nanoporous materials relies on che...
Porous organic cages have recently received much attention due to their synthetic tunability, soluti...
Metal-organic frameworks (MOFs) are porous crystals with the potential to improve many industrial ga...
International audienceNanoporous framework materials are a promising class of materials for energy-e...
Porous organic molecules have internal pores readily occupied by gases, solvent or other guests. The...
This thesis aims to improve the xenon/krypton separation using nanoporous materials. The primary obj...
Nanoporous materials, such as metal-organic frameworks (MOFs), have enormous internal surface areas....
The total world energy demand is predicted to rise significantly over the next few decades, primaril...
The cryogenic separation of noble gases is energy-intensive and expensive, especially when low conce...
Nuclear energy is among the most viable alternatives to our current fossil fuel-based energy economy...
The development of adsorption and membrane-based separation technologies toward more energy and cost...
This study shows that a range of separation applications for the MFM family of metal-organic framewo...
The efficient separation of xenon (Xe) and krypton (Kr) is one of the industrially important process...