Accelerating progress in the discovery and deployment of advanced nanoporous materials relies on chemical insight and structure–property relationships for rational design. Because of the complexity of this problem, trial-and-error is heavily involved in the laboratory today. A cost-effective route to aid experimental materials discovery is to construct structure models of nanoporous materials in silico and use molecular simulations to rapidly test them and elucidate data-driven guidelines for rational design. For example, highly tunable nanoporous materials have shown promise as adsorbents for separating an industrially relevant gaseous mixture of xenon and krypton. In this work, we characterize, screen, and analyze the Nanoporous Materials...
For applications of metal-organic frameworks (MOFs) such as gas storage and separation, flexibility ...
The cryogenic separation of noble gases is energy-intensive and expensive, especially when low conce...
For applications of metal-organic frameworks (MOFs) such as gas storage and separation, flexibility ...
Accelerating progress in the discovery and deployment of advanced nanoporous materials relies on che...
International audienceNanoporous framework materials are a promising class of materials for energy-e...
Nanoporous materials, such as metal-organic frameworks (MOFs), have enormous internal surface areas....
We performed a computational screening of previously reported porous molecular materials, including ...
We performed a computational screening of previously reported porous molecular materials, including ...
Metal-organic frameworks (MOFs) are porous crystals with the potential to improve many industrial ga...
This thesis aims to improve the xenon/krypton separation using nanoporous materials. The primary obj...
Xe/Kr separation project: 1. GCMC 2. Machine learning 3. Idea Vacuum Swing Adsorptio
Nuclear energy is among the most viable alternatives to our current fossil fuel-based energy economy...
The cryogenic separation of noble gases is energy-intensive and expensive, especially when low conce...
The cryogenic separation of noble gases is energy-intensive and expensive, especially when low conce...
The efficient separation of xenon (Xe) and krypton (Kr) is one of the industrially important process...
For applications of metal-organic frameworks (MOFs) such as gas storage and separation, flexibility ...
The cryogenic separation of noble gases is energy-intensive and expensive, especially when low conce...
For applications of metal-organic frameworks (MOFs) such as gas storage and separation, flexibility ...
Accelerating progress in the discovery and deployment of advanced nanoporous materials relies on che...
International audienceNanoporous framework materials are a promising class of materials for energy-e...
Nanoporous materials, such as metal-organic frameworks (MOFs), have enormous internal surface areas....
We performed a computational screening of previously reported porous molecular materials, including ...
We performed a computational screening of previously reported porous molecular materials, including ...
Metal-organic frameworks (MOFs) are porous crystals with the potential to improve many industrial ga...
This thesis aims to improve the xenon/krypton separation using nanoporous materials. The primary obj...
Xe/Kr separation project: 1. GCMC 2. Machine learning 3. Idea Vacuum Swing Adsorptio
Nuclear energy is among the most viable alternatives to our current fossil fuel-based energy economy...
The cryogenic separation of noble gases is energy-intensive and expensive, especially when low conce...
The cryogenic separation of noble gases is energy-intensive and expensive, especially when low conce...
The efficient separation of xenon (Xe) and krypton (Kr) is one of the industrially important process...
For applications of metal-organic frameworks (MOFs) such as gas storage and separation, flexibility ...
The cryogenic separation of noble gases is energy-intensive and expensive, especially when low conce...
For applications of metal-organic frameworks (MOFs) such as gas storage and separation, flexibility ...