Manipulating favorable interfacial microstructure is crucial to rationally design a high-performance mixed matrix membrane with defect-free interface. We describe herein an efficient pathway to finely tune the interfacial adhesion through balancing the metal organic frameworks and polymer functionality. The varied number of hydrogen bonds are established involving the CHO groups in hybrid ZIF-8-90(x) fillers with varied carboxaldehyde-2-imidazole linker contents and 6FDA-DAM:DABA copolyimides having adjustable COOH groups concentrations, thereby precisely controlling the membrane interfacial bonding behavior. As expected, the gas selectivity of the resulting membranes is gradually enhanced with increasing carboxaldehyde-2-imidazole linker s...
AbstractIn the current research, mixed matrix membranes (MMMs) comprising of 5, 10, 15 and 20 wt% of...
Mixed Matrix Membranes (MMM) with enhanced selectivity and permeability are preferred for gas separa...
The design and fabrication of novel mixed-matrix membranes (MMMs) with simultaneously enhanced gas p...
Manipulating favorable interfacial microstructure is crucial to rationally design a high-performance...
Controlling the metal-organic framework (MOF)-matrix interface is a useful strategy to improve the g...
We engineer the interfacial characteristics of a ZIF-8-6FDA-durene polyimide (PI) polymer mixed matr...
Mixed-matrix membranes (MMMs) formed by dispersing metal-organic framework (MOF) particles in polyme...
The demand for cost-efficient separations requires membranes with high gas flux and high selectivity...
Mixed matrix membranes (MMMs) incorporating conventional fillers frequently suffer from insufficient...
Mixed matrix membranes (MMMs) incorporating conventional fillers frequently suffer from insufficient...
MOFs-based mixed matrix membranes (MMMs) have attracted extensive attention in recent years due to t...
Good interfacial compatibility is the key to realize the full potential of metal–organic framework-b...
The performance of polymeric membranes is often limited by a trade-off between membrane permeability...
Asymmetric mixed matrix membranes(MMMs) with MOFs hold great application potential for energy-effici...
Mixed-matrix membranes composed of mechanically strong, solution-processable polymers and highly sel...
AbstractIn the current research, mixed matrix membranes (MMMs) comprising of 5, 10, 15 and 20 wt% of...
Mixed Matrix Membranes (MMM) with enhanced selectivity and permeability are preferred for gas separa...
The design and fabrication of novel mixed-matrix membranes (MMMs) with simultaneously enhanced gas p...
Manipulating favorable interfacial microstructure is crucial to rationally design a high-performance...
Controlling the metal-organic framework (MOF)-matrix interface is a useful strategy to improve the g...
We engineer the interfacial characteristics of a ZIF-8-6FDA-durene polyimide (PI) polymer mixed matr...
Mixed-matrix membranes (MMMs) formed by dispersing metal-organic framework (MOF) particles in polyme...
The demand for cost-efficient separations requires membranes with high gas flux and high selectivity...
Mixed matrix membranes (MMMs) incorporating conventional fillers frequently suffer from insufficient...
Mixed matrix membranes (MMMs) incorporating conventional fillers frequently suffer from insufficient...
MOFs-based mixed matrix membranes (MMMs) have attracted extensive attention in recent years due to t...
Good interfacial compatibility is the key to realize the full potential of metal–organic framework-b...
The performance of polymeric membranes is often limited by a trade-off between membrane permeability...
Asymmetric mixed matrix membranes(MMMs) with MOFs hold great application potential for energy-effici...
Mixed-matrix membranes composed of mechanically strong, solution-processable polymers and highly sel...
AbstractIn the current research, mixed matrix membranes (MMMs) comprising of 5, 10, 15 and 20 wt% of...
Mixed Matrix Membranes (MMM) with enhanced selectivity and permeability are preferred for gas separa...
The design and fabrication of novel mixed-matrix membranes (MMMs) with simultaneously enhanced gas p...