The collective “single‐file” motion of water molecules through natural and artificial nanoconduits inspires the development of high‐performance membranes for water separation. However, a material that contains a large number of pores combining rapid water flow with superior ion rejection is still highly desirable. Here, a 1.2 nm thick carbon nanomembrane (CNM) made from cross‐linking of terphenylthiol (TPT) self‐assembled monolayers is reported to possess these properties. Utilizing their extremely high pore density of 1 sub‐nm channel nm−2, TPT CNMs let water molecules rapidly pass, while the translocation of ions, including protons, is efficiently hindered. Their membrane resistance reaches ≈104 Ω cm2 in 1 m Cl− solutions, comparable to l...
Nanofluidic channels confine water and ions down to length scales that are comparable to the sizes o...
Nanofluidic channels confine water and ions down to length scales that are comparable to the sizes o...
Carbon nanomaterials (CNMs) are potential materials to be used as diffusion barriers for membrane-ba...
Yang Y, Hillmann R, Qi Y, et al. Ultrahigh Ionic Exclusion through Carbon Nanomembranes. Advanced ma...
Yang Y, Hillmann R, Qi Y, et al. Ultrahigh Ionic Exclusion through Carbon Nanomembranes. Advanced ma...
The provision of clean water is a global challenge, and membrane filtration is a key technology to a...
Yang Y, Dementyev P, Biere N, et al. Rapid Water Permeation Through Carbon Nanomembranes with Sub-Na...
Yang Y, Dementyev P, Biere N, et al. Rapid Water Permeation Through Carbon Nanomembranes with Sub-Na...
Two-dimensional (2D) membranes featuring arrays of sub-nanometer pores have applications in purifica...
Two-dimensional (2D) membranes featuring arrays of sub-nanometer pores have applications in purifica...
Qi Y. Molecular Separation and Power Generation by Carbon Nanomembranes. Bielefeld: Universität Biel...
Both MD simulations and experimental studies have shown that liquid and gas flow through carbon nano...
Carbon nanotubes offer an outstanding platform for studying molecular transport at nanoscale, and ha...
Ultrathin nanostructured membranes are widely pursued to apply into different processes ranging from...
Biological pores regulate the cellular traffic of a large variety of solutes, often with high select...
Nanofluidic channels confine water and ions down to length scales that are comparable to the sizes o...
Nanofluidic channels confine water and ions down to length scales that are comparable to the sizes o...
Carbon nanomaterials (CNMs) are potential materials to be used as diffusion barriers for membrane-ba...
Yang Y, Hillmann R, Qi Y, et al. Ultrahigh Ionic Exclusion through Carbon Nanomembranes. Advanced ma...
Yang Y, Hillmann R, Qi Y, et al. Ultrahigh Ionic Exclusion through Carbon Nanomembranes. Advanced ma...
The provision of clean water is a global challenge, and membrane filtration is a key technology to a...
Yang Y, Dementyev P, Biere N, et al. Rapid Water Permeation Through Carbon Nanomembranes with Sub-Na...
Yang Y, Dementyev P, Biere N, et al. Rapid Water Permeation Through Carbon Nanomembranes with Sub-Na...
Two-dimensional (2D) membranes featuring arrays of sub-nanometer pores have applications in purifica...
Two-dimensional (2D) membranes featuring arrays of sub-nanometer pores have applications in purifica...
Qi Y. Molecular Separation and Power Generation by Carbon Nanomembranes. Bielefeld: Universität Biel...
Both MD simulations and experimental studies have shown that liquid and gas flow through carbon nano...
Carbon nanotubes offer an outstanding platform for studying molecular transport at nanoscale, and ha...
Ultrathin nanostructured membranes are widely pursued to apply into different processes ranging from...
Biological pores regulate the cellular traffic of a large variety of solutes, often with high select...
Nanofluidic channels confine water and ions down to length scales that are comparable to the sizes o...
Nanofluidic channels confine water and ions down to length scales that are comparable to the sizes o...
Carbon nanomaterials (CNMs) are potential materials to be used as diffusion barriers for membrane-ba...