In various industrial applications focusing on environmental sustainability, the purification of H2 from CO2-containing streams is crucial. Membrane-based separation processes are preferred over other gas separation techniques due to their superior efficiency and selectivity and lower energy consumption. Membranes composed of inorganic nanoporous materials, known for their uniform pore size distribution and high permeability, exhibit remarkable gas separation performance. Recently, two-dimensional (2D) nanomaterials with high surface area and tunable functional groups have gained attention for membrane-based gas separation applications, owing to their thermal and mechanical durability. Therefore, we carried out a simulation study at the nan...
Carbon dioxide gas separation is important for many environmental and energy applications. Molecular...
© 2018 The Royal Society of Chemistry. Two-dimensional nanomaterials can be used to create innovativ...
Metal-organic framework (MOF) nanosheets could serve as ideal building blocks of molecular sieve mem...
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 ...
Molecular sieving membranes with sufficient and uniform nanochannels that break the permeability-sel...
Molecular sieving membranes with sufficient and uniform nanochannels that break the permeability-sel...
Gaseous molecular separation is crucial for carbon dioxide capture and storage, hydrogen purificati...
MXenes are a new type of 2D material, featuring numerous favorable properties, such as excellent fle...
The ease of producing two-dimensional (2D) structure, tunable surface chemistry, and interlayer spac...
Sub-nanochannels constructed by stacking two-dimensional (2D) nanosheets in parallel provide a uniqu...
Two-dimensional (2D) MXene materials have recently been the focus of membrane research due to their ...
Sub-nanochannels constructed by stacking two-dimensional (2D) nanosheets in parallel provide a uniqu...
© 2018 The Royal Society of Chemistry. Two-dimensional nanomaterials can be used to create innovati...
Carbon dioxide gas separation is important for many environmental and energy applications. Molecular...
© 2018 The Royal Society of Chemistry. Two-dimensional nanomaterials can be used to create innovativ...
Metal-organic framework (MOF) nanosheets could serve as ideal building blocks of molecular sieve mem...
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 ...
Molecular sieving membranes with sufficient and uniform nanochannels that break the permeability-sel...
Molecular sieving membranes with sufficient and uniform nanochannels that break the permeability-sel...
Gaseous molecular separation is crucial for carbon dioxide capture and storage, hydrogen purificati...
MXenes are a new type of 2D material, featuring numerous favorable properties, such as excellent fle...
The ease of producing two-dimensional (2D) structure, tunable surface chemistry, and interlayer spac...
Sub-nanochannels constructed by stacking two-dimensional (2D) nanosheets in parallel provide a uniqu...
Two-dimensional (2D) MXene materials have recently been the focus of membrane research due to their ...
Sub-nanochannels constructed by stacking two-dimensional (2D) nanosheets in parallel provide a uniqu...
© 2018 The Royal Society of Chemistry. Two-dimensional nanomaterials can be used to create innovati...
Carbon dioxide gas separation is important for many environmental and energy applications. Molecular...
© 2018 The Royal Society of Chemistry. Two-dimensional nanomaterials can be used to create innovativ...
Metal-organic framework (MOF) nanosheets could serve as ideal building blocks of molecular sieve mem...