Membrane-based separations have been increasingly utilized to address global energy crisis and water scarcity. However, the separation efficiency often suffers from the trade-off between membrane permeability and selectivity. Although great efforts have been devoted, a membrane with both high permeability and high selectivity remains a distant prospect. Inspired by the hourglass structure and ultrafast water transport in aquaporins, we propose a novel approach to fabricating membranes with conical nanochannels to reduce the mass transfer resistance and to introduce Laplace pressure as the internal driving force, which successfully breaks the permeability/selectivity trade-off. First, sulfonated polyaniline (SPANI) nanorods were in situ-synt...
Two-dimensional (2D) nanosheets show promise for the development of water treatment membranes with e...
Graphene-oxide (GO) membrane with notable ions sieving properties has attracted significant attentio...
Layer-by-layer assembled graphene oxide (GO) has been considered as a high-efficiency novel membrane...
Pressure-driven ultrafiltration membranes are important in separation applications. Advanced filtrat...
A novel graphene oxide (GO)-based nanofiltration membrane on a highly porous polyacrylonitrile nanof...
Graphene oxide (GO) membranes have great potential for separation applications due to their low-fric...
Graphene exhibits fascinating prospects for preparing high-performance membranes with fast water tra...
Graphene-based materials can have well-defined nanometer pores and can exhibit low frictional water ...
Theoretical permeability of membrane is inversely proportional to its thickness, which indicates ult...
Graphene oxide (GO)-based membranes with tunable microstructure and controlled nanochannels have att...
Unique two-dimensional water channels formed by stacked graphene oxide (GO) sheets that are “nonleac...
Graphene oxide (GO) membranes become emerging efficient filters for molecular or ionic separation du...
Graphene oxide (GO) is an emerging kind of building block for advanced membranes with tunable passag...
Graphene-based membranes demonstrating ultrafast water transport, precise molecular sieving of gas a...
Graphene oxide (GO)-based membranes with tunable microstructure and controlled nanochannels have att...
Two-dimensional (2D) nanosheets show promise for the development of water treatment membranes with e...
Graphene-oxide (GO) membrane with notable ions sieving properties has attracted significant attentio...
Layer-by-layer assembled graphene oxide (GO) has been considered as a high-efficiency novel membrane...
Pressure-driven ultrafiltration membranes are important in separation applications. Advanced filtrat...
A novel graphene oxide (GO)-based nanofiltration membrane on a highly porous polyacrylonitrile nanof...
Graphene oxide (GO) membranes have great potential for separation applications due to their low-fric...
Graphene exhibits fascinating prospects for preparing high-performance membranes with fast water tra...
Graphene-based materials can have well-defined nanometer pores and can exhibit low frictional water ...
Theoretical permeability of membrane is inversely proportional to its thickness, which indicates ult...
Graphene oxide (GO)-based membranes with tunable microstructure and controlled nanochannels have att...
Unique two-dimensional water channels formed by stacked graphene oxide (GO) sheets that are “nonleac...
Graphene oxide (GO) membranes become emerging efficient filters for molecular or ionic separation du...
Graphene oxide (GO) is an emerging kind of building block for advanced membranes with tunable passag...
Graphene-based membranes demonstrating ultrafast water transport, precise molecular sieving of gas a...
Graphene oxide (GO)-based membranes with tunable microstructure and controlled nanochannels have att...
Two-dimensional (2D) nanosheets show promise for the development of water treatment membranes with e...
Graphene-oxide (GO) membrane with notable ions sieving properties has attracted significant attentio...
Layer-by-layer assembled graphene oxide (GO) has been considered as a high-efficiency novel membrane...