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Mechanical Stability of Polystyrene and Janus Particle Mono layers at the Air/Water Interface

Year: 2015

Journal: JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, Vol. 137, p 15370-15373, 20170208

Authors: Lenis, Jessica; Razavi, Sepideh; Cao, Kathleen D.; Lin, Binhua; Lee, Ka Yee C.; Tu, Raymond S.; Kretzschmar, Ilona

Organizations: CUNY City Coll, Dept Chem Engn, New York, NY 10031 USA; Univ Chicago, Dept Chem, Inst Biophys Dynam, Chicago, IL 60637 USA; Univ Chicago, James Franck Inst, Chicago, IL 60637 USA; Univ Chicago, Ctr Adv Radiat Sources, Chicago, IL 60637 USA

The compressional instability of particle-laden air/water interfaces is investigated with plain and surface-anisotropic (Janus) particles. We hypothesize that the amphiphilic nature of Janus particles leads to both anisotropic particle particle and particle interface interactions that can yield particle films with unique collapse mechanisms. Analysis of Langmuir isotherms and microstructural characterization of the homogeneous polystyrene particle films during compression reveal an interfacial buckling instability followed by folding, which is in good agreement with predictions from classical elasticity theory. In contrast, Janus particle films exhibit a different behavior during compression, where the collapse mode occurs through the subduction of the Janus particle film. Our results suggest that particle-laden films comprised of surface-anisotropic particles can be engineered to evolve new material properties.