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Ultrafast ion sieving using nanoporous polymeric membranes

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Authors

Wang, Pengfei
Wang, Mao
Liu, Feng
Ding, Siyuan
Wang, Xue
Du, Guanghua
Liu, Jie
Apel, Pavel
Kluth, Patrick
Trautmann, Christina

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Macmillan Publishers Ltd

Abstract

The great potential of nanoporous membranes for water filtration and chemical separation has been challenged by the trade-off between selectivity and permeability. Here we report on nanoporous polymer membranes with an excellent balance between selectivity and perme- ability of ions. Our membranes are fabricated by irradiating 2-μm-thick polyethylene ter- ephthalate Lumirror® films with GeV heavy ions followed by ultraviolet exposure. These membranes show a high transport rate of K+ ions of up to 14 mol h−1 m−2 and a selectivity of alkali metal ions over heavy metal ions of >500. Combining transport experiments and molecular dynamics simulations with a polymeric nanopore model, we demonstrate that the high permeability is attributable to the presence of nanopores with a radius of ~0.5 nm and a density of up to 5 × 1010 cm−2, and the selectivity is ascribed to the interaction between the partially dehydrated ions and the negatively charged nanopore wall.

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Source

Nature Communications

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Access Statement

Open Access

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Creative Commons Attribution licence

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