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MOF-based membranes for gas separations
Metal–organic frameworks (MOFs) represent the largest known class of porous crystalline
materials ever synthesized. Their narrow pore windows and nearly unlimited structural and …
materials ever synthesized. Their narrow pore windows and nearly unlimited structural and …
Recent advances in polymers of intrinsic microporosity (PIMs) membranes: Delving into the intrinsic microstructure for carbon capture and arduous industrial …
Polymers of intrinsic microporosity (PIMs) are unique polymers known for their intrinsic micro-
scale porosity contributed by bulky and rigid contortion sites in the polymer backbone …
scale porosity contributed by bulky and rigid contortion sites in the polymer backbone …
Advanced carbon molecular sieve membranes derived from molecularly engineered cross-linkable copolyimide for gas separations
Carbon molecular sieve (CMS) membranes with precise molecular discrimination ability and
facile scalability are attractive next-generation membranes for large-scale, energy-efficient …
facile scalability are attractive next-generation membranes for large-scale, energy-efficient …
Hydrophobic polyamide nanofilms provide rapid transport for crude oil separation
Hydrocarbon separation relies on energy-intensive distillation. Membrane technology can
offer an energy-efficient alternative but requires selective differentiation of crude oil …
offer an energy-efficient alternative but requires selective differentiation of crude oil …
Artificial channels for confined mass transport at the sub-nanometre scale
Mass transport at the sub-nanometre scale, including selective transport of gases, liquids
and ions, plays a key role in systems such as catalysis, energy generation and storage …
and ions, plays a key role in systems such as catalysis, energy generation and storage …
Organic molecular sieve membranes for chemical separations
Molecular separations that enable selective transport of target molecules from gas and liquid
molecular mixtures, such as CO2 capture, olefin/paraffin separations, and organic solvent …
molecular mixtures, such as CO2 capture, olefin/paraffin separations, and organic solvent …
Ultrathin covalent organic framework membranes via a multi‐interfacial engineering strategy for gas separation
Covalent organic frameworks (COFs) are promising membrane materials due to their high
porosity, ordered arrangements, and high stability. However, the relatively large pore size …
porosity, ordered arrangements, and high stability. However, the relatively large pore size …
Thinking the future of membranes: Perspectives for advanced and new membrane materials and manufacturing processes
The state-of-the-art of membrane technology is characterized by a number of mature
applications such as sterile filtration, hemodialysis, water purification and gas separation, as …
applications such as sterile filtration, hemodialysis, water purification and gas separation, as …
Functionalized 2D membranes for separations at the 1-nm scale
The ongoing evolution of two-dimensional (2D) material-based membranes has prompted
the realization of mass separations at the 1-nm scale due to their well-defined selective …
the realization of mass separations at the 1-nm scale due to their well-defined selective …
Microporous framework membranes for precise molecule/ion separations
Microporous framework membranes such as metal–organic framework (MOF) membranes
and covalent organic framework (COF) membranes are constructed by the controlled growth …
and covalent organic framework (COF) membranes are constructed by the controlled growth …