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February 5, 2026Langmuir0 citations

Effect of Pressure on Liquid-Phase Adsorption on a Solid Surface

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MSMaria Incoronata SciancaleporeUniversity of EdinburghSCStuart M. ClarkeUniversity of CambridgePCPhilip J. CampUniversity of Edinburgh

Key Points

  • This research investigates how pressure affects liquid-phase adsorption on solid surfaces, especially for surface-active molecules.
  • Analyzed the effects of pressure on liquid-solution thermodynamics
  • Utilized a Langmuir-type model to predict surface coverage
  • Conducted molecular-dynamics simulations of nonideal solutions
  • Examined volume-of-mixing data for real solutions
  • Adsorption behavior is influenced by volumes of mixing in dilute solutions
  • Positive volumes of mixing result in increased adsorption, while negative volumes decrease it
  • Gigapascal pressures can change the adsorption constant by an order of magnitude

Abstract

The effect of pressure on gas-phase adsorption on a solid surface has been well-known since the time of Irving Langmuir, but the situation is less clear for the adsorption of a solute from a liquid solution at high pressure. This could be important in solutions of surface-active molecules for applications under high pressure, such as lubricants in engines, motors, and wind turbines in which gigapascal pressures are possible, and the adsorption of additives on moving parts or dispersed particles is linked to performance. Pressure affects the chemical potentials of the solute and solvent in both the liquid solution and the adsorbed layer. Inspired by a recent experimental study Sharifi, N.; J. Phys. Chem. B 2023, 127, 5141-5149, the effect on liquid-solution thermodynamics is explored, and it is shown that the volume of mixing of the solution, and its gradient with respect to the solute mole fraction, strongly influence whether adsorption increases or decreases with an increase in pressure. Dilute solutions with positive (negative) volumes of mixing show increased (decreased) adsorption. Concrete predictions are made using a Langmuir-type model expressed as surface coverage as a function of solute mole fraction. Key thermodynamic relationships are illustrated with molecular-dynamics simulations of a simple model of nonideal solutions, and numerical estimates of the pressure effect are given. Finally, volume-of-mixing data for real solutions are analyzed, and it is shown that gigapascal pressures are enough to change the adsorption constant by at least an order of magnitude.

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Cite This Study

Sciancalepore et al. (2026) studied this question.

synapsesocial.com/papers/6984345ff1d9ada3c1fb2679https://doi.org/10.1021/acs.langmuir.5c06132
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