4.7 Article

Anomalous dielectric behaviors of electrolyte solutions confined in graphene oxide nanochannels

Journal

SCIENTIFIC REPORTS
Volume 11, Issue 1, Pages -

Publisher

NATURE PORTFOLIO
DOI: 10.1038/s41598-021-98326-9

Keywords

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Funding

  1. Natural Science Foundation of Shanghai [20ZR1462900]
  2. National Natural Science Foundation of China [21603164]
  3. Major Science and Technology Program for Water Pollution Control and Treatment [2017ZX07207004]
  4. Shanghai Science and Technology Innovation Action Plan [19DZ1204304]

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The dielectric behavior of salt aqueous solutions in confined spaces shows anisotropy and a critical concentration, with in-plane components decreasing and out-of-plane components increasing, leading to fluctuation of water molecules' dipolar and dielectric permittivity.
Dielectric behavior of salt aqueous solutions with various concentration in pristine and oxide graphene nanochannels has been investigated by means of molecular dynamic simulations. The motivation in performing this integrated set of simulations was to provide deep insight into the interaction between the size of the enclosure and the oxidation degree of the membrane sheets on the dielectric properties. It was shown that the dielectric permittivity of both aqueous and NaCl solution in confined phase exhibits an anisotropic behavior. The in-plane component decreases with the increase of the concentration of NaCl solution while an increase of the out-of-plane dielectric is observed and these out-of-plane components exhibit a non-monotonous trend and thus exist a critical concentration of NaCl solution with 0.2 mol/L and 0.4 mol/L for both pristine and oxide graphene nanochannels, respectively. This peculiar dielectric behavior results from the addition of ions that significantly perturb the hydrogen bonding network of the confined system, and hence leading to a fluctuation of dipolar of water molecules and dielectric permittivity.

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