Influence of Surfactants, Polymers and Proteins on Foam Film Drainage

POSTER

Abstract

Foams can be described as colloidal dispersions containing large gas cells separated by thin liquid films, whose junctions are called Plateau borders. Drainage of individual ultrathin foam films (thickness < 100 nm) into Plateau borders is governed by the interplay of capillarity, disjoining pressure, viscosity, and interfacial rheology. It is well-established that confinement-induced structuring and layeringof supramolecular structures like micelles, liquid crystals, colloidal particles, or polyelectrolytes within foam films results in drainage via stratification. Only few examples show the possibility of stratification in foam films containing polymers or proteins. In this contribution, we visualize and analyze drainage in foam formulated with surfactants, proteins, polymers and their mixtures, and describe the specific connection to foam stability and applications in diverse areas in foods, cosmetics, environmental remediation, oil recovery, and healthcare.

*NSF CBET 180611;  Motif FoodWorks, Inc.

Publication: 1. Xu, Chenxian, Yiran Zhang, and Vivek Sharma. "Spatiotemporal mapping of nanotopography and thickness transitions of ultrathin foam films." Soft Matter 20, no. 18 (2024): 3719-3727.
2. Xu, Chenxian, Carina D V Martínez Narváez, Patrycja Kotwis, and Vivek Sharma. "Polymer-surfactant complexes impact the stratification and nanotopography of micellar foam films." Langmuir 39, no. 16 (2023): 5761-5770.
3. Hassan, Lena, Chenxian Xu, Michael Boehm, Stefan K. Baier, and Vivek Sharma. "Ultrathin micellar foam films of sodium caseinate protein solutions." Langmuir 39, no. 17 (2023): 6102-6112.

Presenters

  • Chenxian Xu

    • University of Illinois Chicago
    • North Carolina State University

Authors

  • Chenxian Xu

    • University of Illinois Chicago
    • North Carolina State University
  • Kim Ngo

    • University of Illinois Chicago
  • Carina D Martínez Narváez

    • University of Illinois Chicago
    • University of Chicago
  • Lena Hassan

    • University of Illinois Chicago
  • Vivek Sharma

    • University of Illinois at Chicago
    • UIC
    • University of Illinois Chicago