Ultrathin graphene oxide (GO) (<5 nm) membranes were prepared by spin-casting onto microporous polymeric support membranes. GO membranes exhibited a highly CO2 permeable character, which is suitable for CO2 separation. In the presence of water vapour, high CO2 selectivity (e.g., CO2/H-2, CO2/H-2, and CO2/CH4) was achieved by enhanced CO2 sorption
Computational simulations have suggested the enormous potential of using porous graphene-based mater...
We fabricated novel composite (mixed matrix) membranes based on a permeable glassy polymer, Poly(2,6...
Membrane-based postcombustion carbon capture can reduce the capture penalty in comparison to absorbe...
We herein report a facile preparation of graphene oxide (GO) membranes including three steps: (1) mi...
Realization of suitable membrane-based technology for efficient CO2 capture to mitigate climate chan...
Realization of suitable membrane-based technology for efficient CO2 capture to mitigate climate chan...
© 2018 The Royal Society of Chemistry. Two-dimensional nanomaterials can be used to create innovativ...
© 2018 The Royal Society of Chemistry. Two-dimensional nanomaterials can be used to create innovati...
High-flux nanoporous single-layer graphene membranes are highly promising for energy-efficient gas s...
Thermally rearranged (TR) polymers are an important class of microporous polymers with remarkable ga...
A novel fixed carrier composite membrane was prepared via interfacial polymerization by using graphe...
Thermally rearranged (TR) polymers are an important class of microporous polymers with remarkable ga...
The computational simulation of porous graphene oxide (PGO) indicated that it has great potential fo...
Graphene oxide (GO) is a one-atom-thick two dimensional material which has unique mechanical, elect...
The computational simulation of porous graphene oxide (PGO) indicated that it has great potential fo...
Computational simulations have suggested the enormous potential of using porous graphene-based mater...
We fabricated novel composite (mixed matrix) membranes based on a permeable glassy polymer, Poly(2,6...
Membrane-based postcombustion carbon capture can reduce the capture penalty in comparison to absorbe...
We herein report a facile preparation of graphene oxide (GO) membranes including three steps: (1) mi...
Realization of suitable membrane-based technology for efficient CO2 capture to mitigate climate chan...
Realization of suitable membrane-based technology for efficient CO2 capture to mitigate climate chan...
© 2018 The Royal Society of Chemistry. Two-dimensional nanomaterials can be used to create innovativ...
© 2018 The Royal Society of Chemistry. Two-dimensional nanomaterials can be used to create innovati...
High-flux nanoporous single-layer graphene membranes are highly promising for energy-efficient gas s...
Thermally rearranged (TR) polymers are an important class of microporous polymers with remarkable ga...
A novel fixed carrier composite membrane was prepared via interfacial polymerization by using graphe...
Thermally rearranged (TR) polymers are an important class of microporous polymers with remarkable ga...
The computational simulation of porous graphene oxide (PGO) indicated that it has great potential fo...
Graphene oxide (GO) is a one-atom-thick two dimensional material which has unique mechanical, elect...
The computational simulation of porous graphene oxide (PGO) indicated that it has great potential fo...
Computational simulations have suggested the enormous potential of using porous graphene-based mater...
We fabricated novel composite (mixed matrix) membranes based on a permeable glassy polymer, Poly(2,6...
Membrane-based postcombustion carbon capture can reduce the capture penalty in comparison to absorbe...