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Microfluidic osmotic compression of a charge-stabilized colloidal dispersion: Equation of state and collective diffusion coefficient

Camille Keita1, Yannick Hallez2, and Jean-Baptiste Salmon1

  • 1CNRS, Solvay, LOF, UMR 5258, Université Bordeaux, F-33600 Pessac, France
  • 2Laboratoire de Génie Chimique, Université de Toulouse, CNRS, INPT, UPS, Toulouse, France

Phys. Rev. E 104, L062601 – Published 14 December, 2021

DOI: https://doi.org/10.1103/PhysRevE.104.L062601

Abstract

We show, using a model coupling mass transport and liquid theory calculations for a charge-stabilized colloidal dispersion, that diffusion significantly limits measurement times of its equation of state (EOS), osmotic pressure vs composition, using the osmotic compression technique. Following this result, we present a microfluidic chip allowing one to measure the entire EOS of a charged dispersion at the nanoliter scale in a few hours. We also show that time-resolved analyses of relaxation to equilibrium in this microfluidic experiment lead to direct estimates of the collective diffusion coefficient of the dispersion in Donnan equilibrium with a salt reservoir.

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