Gas separation membranes are one of the lowest energy technologies available for the separation of carbon dioxide from flue gas. Key to handling the immense scale of this separation is maximised membrane permeability at sufficient selectivity for CO2 over N2. For the first time it is revealed that metals can be post-synthetically exchanged in MOFs to drastically enhance gas transport performance in membranes. Ti-exchanged UiO-66 MOFs have been found to triple the gas permeability without a loss in selectivity due to several effects that include increased affinity for CO2 and stronger interactions between the polymer matrix and the Ti-MOFs. As a result, it is also shown that MOFs optimized in previous works for batch-wise adsorption applicat...
The design and fabrication of novel mixed-matrix membranes (MMMs) with simultaneously enhanced gas p...
Asymmetric mixed matrix membranes(MMMs) with MOFs hold great application potential for energy-effici...
Conventional CO2 separation in the petrochemical industry via cryogenic distillation or amine-based ...
Functionalization and post-synthetic modification (PSM) of metal-organic frameworks (MOFs) are two i...
The performance of polymeric membranes is often limited by a trade-off between membrane permeability...
Atomically detailed simulations were used to examine CO2/N-2 separation potential of metal organic f...
The separation of CO2 from energy streams such as raw natural gas and bio gas is of high importance ...
Atomically detailed simulations were used to examine CO2/N2 separation potential of metal organic fr...
Metal–organic frameworks (MOFs) represent the largest known class of porous crystalline materials ev...
Mixed matrix membranes (MMMs) have attracted significant attention for overcoming the limitations of...
Most metal-organic-framework- (MOF-) based hybrid membranes face the challenge of low gas permeabili...
In this study, the challenge of selecting metal–organic frameworks (MOFs) as filler particles in hig...
Metal organic frameworks (MOFs) are supposed to be ideal additives for mixed matrix membranes (MMMs)...
Mixed matrix membranes (MMMs) composed of metal organic framework (MOF) fi llers embedded in a polym...
International audienceMembrane gas separation units are gaining increasing attention owing to their ...
The design and fabrication of novel mixed-matrix membranes (MMMs) with simultaneously enhanced gas p...
Asymmetric mixed matrix membranes(MMMs) with MOFs hold great application potential for energy-effici...
Conventional CO2 separation in the petrochemical industry via cryogenic distillation or amine-based ...
Functionalization and post-synthetic modification (PSM) of metal-organic frameworks (MOFs) are two i...
The performance of polymeric membranes is often limited by a trade-off between membrane permeability...
Atomically detailed simulations were used to examine CO2/N-2 separation potential of metal organic f...
The separation of CO2 from energy streams such as raw natural gas and bio gas is of high importance ...
Atomically detailed simulations were used to examine CO2/N2 separation potential of metal organic fr...
Metal–organic frameworks (MOFs) represent the largest known class of porous crystalline materials ev...
Mixed matrix membranes (MMMs) have attracted significant attention for overcoming the limitations of...
Most metal-organic-framework- (MOF-) based hybrid membranes face the challenge of low gas permeabili...
In this study, the challenge of selecting metal–organic frameworks (MOFs) as filler particles in hig...
Metal organic frameworks (MOFs) are supposed to be ideal additives for mixed matrix membranes (MMMs)...
Mixed matrix membranes (MMMs) composed of metal organic framework (MOF) fi llers embedded in a polym...
International audienceMembrane gas separation units are gaining increasing attention owing to their ...
The design and fabrication of novel mixed-matrix membranes (MMMs) with simultaneously enhanced gas p...
Asymmetric mixed matrix membranes(MMMs) with MOFs hold great application potential for energy-effici...
Conventional CO2 separation in the petrochemical industry via cryogenic distillation or amine-based ...