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Charge- and Size-Selective Ion Sieving Through Ti<sub>3</sub>C<sub>2</sub>T<sub><i>x</i></sub> MXene Membranes

The Journal of Physical Chemistry Letters · 2015 · Vol. 6(20) · pp. 4026–4031
Chang E. RenKelsey B. HatzellMohamed AlhabebZheng LingKhaled A. MahmoudYury Gogotsi

Abstract

Nanometer-thin sheets of 2D Ti3C2Tx (MXene) have been assembled into freestanding or supported membranes for the charge- and size-selective rejection of ions and molecules. MXene membranes with controllable thicknesses ranging from hundreds of nanometers to several micrometers exhibited flexibility, high mechanical strength, hydrophilic surfaces, and electrical conductivity that render them promising for separation applications. Micrometer-thick MXene membranes demonstrated ultrafast water flux of 37.4 L/(Bar·h·m(2)) and differential sieving of salts depending on both the hydration radius and charge of the ions. Cations with a larger charge and hydration radii smaller than the interlayer spacing of MXene (∼6 Å) demonstrate an order of magnitude slower permeation compared to single-charged cations. Our findings may open a door for developing efficient and highly selective separation membranes from 2D carbides.

MXene and MAX Phase MaterialsGraphene research and applicationsMembrane Separation TechnologiesMembraneMicrometerMaterials scienceIonNanometreRADIUSConductivityMoleculeAnalytical Chemistry (journal)Chemical physics

Funding

  • China Scholarship Council
  • Division of Graduate Education
Citations
978
FWCI
21.13
field-weighted impact
References
40
Percentile
100%
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Citations per year
References
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Nature Communications · 2013 · 2,723 citations
Water desalination using nanoporous single-layer graphene
Nature Nanotechnology · 2015 · 1,651 citations
Ultrathin Graphene Nanofiltration Membrane for Water Purification
Advanced Functional Materials · 2013 · 1,592 citations
Water Transport through Ultrathin Graphene
The Journal of Physical Chemistry Letters · 2010 · 542 citations
Dye adsorption and decomposition on two-dimensional titanium carbide in aqueous media
Journal of Materials Chemistry A · 2014 · 781 citations
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