Publication | Open Access
Tunable Ion Transport with Freestanding Vermiculite Membranes
61
Citations
31
References
2022
Year
Membrane StructureEngineeringMembrane StabilityMembrane CharacterizationChemistryChemical EngineeringDifferent InterlayersMembrane TransportCeramic MembraneTransport PhenomenaMaterials ScienceNanotechnologyMembrane BiologyMolecular EngineeringMembrane PermeationMembrane FormationNanomaterialsApplied PhysicsMedicineTunable Ion TransportInterlayer Galleries
Membranes integrating two-dimensional (2D) materials have emerged as a category with unusual ion transport and potentially useful separation applications in both aqueous and nonaqueous systems. The interlayer galleries in these membranes drive separation and selectivity, with specific transport properties determined by the chemical and structural modifications within the inherently different interlayers. Here we report an approach to tuning interlayer spacing with a single source material─exfoliated and restacked vermiculite with alkanediamine cross-linkers─to both control the gallery height and enhance the membrane stability. The as-prepared cross-linked 2D vermiculite membranes exhibit ion diffusivities tuned by the length of the selected diamine molecule. The 2D nanochannels in these stabilized vermiculite membranes enable a systematic study of confined ionic transport.
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