Precise and Ultrafast Molecular Sieving Through Graphene Oxide Membranes
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Summary
This work investigates permeation through micrometer-thick laminates prepared by means of vacuum filtration of graphene oxide suspensions, which reveal that the GO membrane can attract a high concentration of small ions into the membrane, which may explain the fast ion transport.
- Type
- article
- Published
- 2014-01-14
- Cited by
- 2,287
- References
- 53
- Access
- Open access
- OpenAlex
- https://openalex.org/W2165172960
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:13154836
Keywords
Graphene, Permeation, Oxide, Filtration (mathematics), Membrane
References
- Energy, Technology, And The Environment
- Salt concentration, pH and pressure controlled separation of small molecules through lamellar graphene oxide membranes.
- Effect of tip functionalization on transport through vertically oriented carbon nanotube membranes.
- Mechanically and structurally robust sulfonated block copolymer membranes for water purification applications
- Displacement processes on hydrophilic/hydrophobic surfaces in methanol-water mixtures
- Designing the Next Generation of Chemical Separation Membranes
- Selective ion penetration of graphene oxide membranes.
- Breakdown of fast water transport in graphene oxides.
- Molecular dynamics simulations of aqueous NaCl and KCl solutions: Effects of ion concentration on the single-particle, pair, and collective dynamical properties of ions and water molecules
- Arsenate replacing phosphate - alternative life chemistries and ion promiscuity
- Effect of synthesis method on solvation and exfoliation of graphite oxide
- Fast parallel algorithms for short-range molecular dynamics
- Unimpeded Permeation of Water Through Helium-Leak–Tight Graphene-Based Membranes
- Nanoscale hydrodynamics: Enhanced flow in carbon nanotubes
- Towards direct potable reuse with forward osmosis: Technical assessment of long-term process performance at the pilot scale
- Fast Mass Transport Through Sub-2-Nanometer Carbon Nanotubes
- Water conduction through the hydrophobic channel of a carbon nanotube
- Molecular dynamics with coupling to an external bath
- A smooth particle mesh Ewald method
- Influence of molecular size, polarity and charge on the retention of organic molecules by nanofiltration
Cited by
- Ion transport controlled by nanoparticle-functionalized membranes
- Graphene oxide/metal nanocrystal multilaminates as the atomic limit for safe and selective hydrogen storage
- Van der Waals pressure and its effect on trapped interlayer molecules
- Inorganic Nanowires-Assembled Layered Paper as the Valve for Controlling Water Transportation.
- Swelling of Graphene Oxide Membranes in Aqueous Solution: Characterization of Interlayer Spacing and Insight into Water Transport Mechanisms.
- Current and future directions in electron transfer chemistry of graphene.
- Controlled Gelation of Graphene Towards Unprecedented Superstructures.
- Facilitated Water Transport through Graphene Oxide Membranes Functionalized with Aquaporin‐Mimicking Peptides
- Local structural changes in graphene oxide layers induced by silver nanoparticles.
- Membrane Separation in Organic Liquid: Technologies, Achievements, and Opportunities
- Low-Grade Waste Heat Recovery via an Osmotic Heat Engine by Using a Freestanding Graphene Oxide Membrane
- IRON AND IRON OXIDE FUNCTIONALIZED MEMBRANES WITH APPLICATIONS TO SELECTED CHLORO-ORGANIC AND METAL REMOVAL FROM WATER
- Engineering Graphene Oxide Membranes for Contaminant Removal and Bacterial Inactivation
- Highly water-selective hybrid membrane by incorporating g-C3N4 nanosheets into polymer matrix
- Interfacial Interactions between Carbon Nanoparticles and Conjugated Polymers
- Layer-by-layer (LBL) assembly technology as promising strategy for tailoring pressure-driven desalination membranes
- Graphene for enhanced metal plasmonics
- Molecular dynamics simulation of water transport through graphene-based nanopores: Flow behavior and structure characteristics
- Dielectric relaxation characteristics of chemically reduced graphite oxide
- Graphene oxide: The new membrane material
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