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    Irreversible thermodynamics of curved lipid membranes. II. Permeability and osmosis

    Ahmad M. Alkadri1,* and Kranthi K. Mandadapu1,2,†

    • *Contact author: ahmadalkadri@berkeley.edu
    • †Contact author: kranthi@berkeley.edu

    Phys. Rev. E 112, 034413 – Published 24 September, 2025

    DOI: https://doi.org/10.1103/wfj9-7l6r

    Abstract

    We present a theory that combines the framework of irreversible thermodynamics with modified integral theorems to model arbitrarily curved and deforming membranes immersed in bulk fluid solutions. We study the coupling between the mechanics and permeability of a viscous and elastically bendable membrane, and a multicomponent bulk fluid solution. An equation for the internal entropy production for irreversibilities at the membrane is derived, determining the generalized thermodynamic forces and fluxes, from which we identify the deviatoric stress as a novel driving force for permeability. A complete set of equations of motion, constitutive laws, and boundary conditions to model the lipid membrane and bulk fluid system are provided.

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    See Also

    Irreversible thermodynamics of curved lipid membranes

    Amaresh Sahu, Roger A. Sauer, and Kranthi K. Mandadapu
    Phys. Rev. E 96, 042409 (2017)

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