MXenes are a new type of 2D material, featuring numerous favorable properties, such as excellent flexibility, hydrophilicity, abundant functional groups, and high conductivity. Currently, MXene is a hot topic in the field of membrane separation processes. This timely review presents the recent progress in MXene‐based membrane in terms of structural engineering and versatile applications. First, the preparation methods for MXene nanosheets and the fabrication technologies for MXene‐based membranes are categorized. Then, the separation‐based applications of MXene membranes, including gas separation, water treatment, organic solvent purification, nanofluidic ion transport, and osmotic energy conversion, are summarized. Finally, the bottlenecks...
MXene-based two-dimensional (2D) material membranes have attracted an increasing number of attention...
Molecular sieving membranes with sufficient and uniform nanochannels that break the permeability-sel...
This study aims to investigate how different functional groups on MXene thin film can affect its ion...
The ease of producing two-dimensional (2D) structure, tunable surface chemistry, and interlayer spac...
Nanomaterials embedded in nanofiltration membranes have become a promising modification technology t...
The use of 2D nanomaterials for membrane designation has proved promising to improve the membrane se...
Two-dimensional (2D) materials are promising candidates for advanced water purification membranes. A...
Two-dimensional (2D) materials such as graphene, graphene oxide (GO), metal carbides and nitrides (M...
In various industrial applications focusing on environmental sustainability, the purification of H2 ...
In various industrial applications focusing on environmental sustainability, the purification of H2 ...
In various industrial applications focusing on environmental sustainability, the purification of H2 ...
In various industrial applications focusing on environmental sustainability, the purification of H2 ...
MXene,very recently emerging family of two-dimensional (2D) transition metal carbides and/or nitride...
Molecular sieving membranes with sufficient and uniform nanochannels that break the permeability-sel...
MXene-based two-dimensional (2D) material membranes have attracted an increasing number of attention...
MXene-based two-dimensional (2D) material membranes have attracted an increasing number of attention...
Molecular sieving membranes with sufficient and uniform nanochannels that break the permeability-sel...
This study aims to investigate how different functional groups on MXene thin film can affect its ion...
The ease of producing two-dimensional (2D) structure, tunable surface chemistry, and interlayer spac...
Nanomaterials embedded in nanofiltration membranes have become a promising modification technology t...
The use of 2D nanomaterials for membrane designation has proved promising to improve the membrane se...
Two-dimensional (2D) materials are promising candidates for advanced water purification membranes. A...
Two-dimensional (2D) materials such as graphene, graphene oxide (GO), metal carbides and nitrides (M...
In various industrial applications focusing on environmental sustainability, the purification of H2 ...
In various industrial applications focusing on environmental sustainability, the purification of H2 ...
In various industrial applications focusing on environmental sustainability, the purification of H2 ...
In various industrial applications focusing on environmental sustainability, the purification of H2 ...
MXene,very recently emerging family of two-dimensional (2D) transition metal carbides and/or nitride...
Molecular sieving membranes with sufficient and uniform nanochannels that break the permeability-sel...
MXene-based two-dimensional (2D) material membranes have attracted an increasing number of attention...
MXene-based two-dimensional (2D) material membranes have attracted an increasing number of attention...
Molecular sieving membranes with sufficient and uniform nanochannels that break the permeability-sel...
This study aims to investigate how different functional groups on MXene thin film can affect its ion...