Salinity gradient energy, as a type of blue energy, is a promising sustainable energy source. Its energy conversion efficiency is significantly determined by the selective membranes. Recently, nanofluidic membrane made by two-dimensional (2D) nanomaterials (e.g., graphene) with densely packed nanochannels has been considered as a high-efficient membrane in the osmotic power generation research field. Herein, the graphene oxide-cellulose acetate (GO–CA) heterogeneous membrane was assembled by combining a porous CA membrane and a layered GO membrane; the combination of 2D nanochannels and 3D porous structures make it show high surface-charge-governed property and excellent ion transport stability, resulting in an efficient osmotic power harve...
The urgent concern of water shortage have promoted to the development of different sustainable techn...
Abstract Graphene oxide (GO) membranes have shown great potential in ionic sieving from aqueous solu...
Graphene oxide (GO) is an atomically-thick, two-dimensional nanomaterial decorated with an abundance...
Salinity gradient energy, as a type of blue energy, is a promising sustainable energy source. Its en...
Salinity gradient energy, as a type of blue energy, is a promising sustainable energy source. Its en...
The graphene oxide (GO) membrane has recently emerged as a promising material for nanofiltration. Ho...
Two-dimensional (2D) nanosheets show promise for the development of water treatment membranes with e...
The increase of energy demand added to the concern for environmental pollution linked to energy gene...
Graphene oxide (GO) based membranes have attracted considerable interest in desalination and organic...
Graphene oxide (GO) is a promising two-dimensional (2D) nanomaterial that could improve the performa...
Graphene-oxide (GO) membrane with notable ions sieving properties has attracted significant attentio...
Environmental sustainability covers a wide range of issues starting from a specific location to a gl...
Graphene oxide (GO) is a chemical derivative of graphene which possesses interesting characteristics...
Graphene oxide (GO)-based membranes have been widely studied for realizing efficient wastewater trea...
© 2018 Elsevier B.V. This study introduces a thin-film composite (TFC) membrane with a dual-layered ...
The urgent concern of water shortage have promoted to the development of different sustainable techn...
Abstract Graphene oxide (GO) membranes have shown great potential in ionic sieving from aqueous solu...
Graphene oxide (GO) is an atomically-thick, two-dimensional nanomaterial decorated with an abundance...
Salinity gradient energy, as a type of blue energy, is a promising sustainable energy source. Its en...
Salinity gradient energy, as a type of blue energy, is a promising sustainable energy source. Its en...
The graphene oxide (GO) membrane has recently emerged as a promising material for nanofiltration. Ho...
Two-dimensional (2D) nanosheets show promise for the development of water treatment membranes with e...
The increase of energy demand added to the concern for environmental pollution linked to energy gene...
Graphene oxide (GO) based membranes have attracted considerable interest in desalination and organic...
Graphene oxide (GO) is a promising two-dimensional (2D) nanomaterial that could improve the performa...
Graphene-oxide (GO) membrane with notable ions sieving properties has attracted significant attentio...
Environmental sustainability covers a wide range of issues starting from a specific location to a gl...
Graphene oxide (GO) is a chemical derivative of graphene which possesses interesting characteristics...
Graphene oxide (GO)-based membranes have been widely studied for realizing efficient wastewater trea...
© 2018 Elsevier B.V. This study introduces a thin-film composite (TFC) membrane with a dual-layered ...
The urgent concern of water shortage have promoted to the development of different sustainable techn...
Abstract Graphene oxide (GO) membranes have shown great potential in ionic sieving from aqueous solu...
Graphene oxide (GO) is an atomically-thick, two-dimensional nanomaterial decorated with an abundance...