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Two recipes for repelling hot water

ORAL

Abstract

While a hydrophobic microtexture at a solid surface most often reflects rain owing to the presence of entrapped air within the texture, it is much more challenging to repel hot water. As it contacts a colder material, hot water generates condensation within the cavities at the solid surface, which eventually builds bridges between the substrate and the water, and thus destroys repellency. In this talk, we will explore impacts of hot water drops on cold superhydrophobic materials. While both "small" (~100 nm) and "large" (~10 µm) model features do reflect hot drops at any drop temperature and in the whole range of explored impact velocities, surprisingly water does not always bounce on intermediate (~ 1 µm) textures. Hence, we can define two structural recipes for repelling hot water: drops on nanometric features hardly stick owing to the miniaturization of water bridges, while kinetics of condensation in large features is too slow to connect the liquid to the solid at impact.

Publication: Mouterde, T., Lecointre, P., Lehoucq, G., Checco, A., Clanet, C., & Quéré, D. Two recipes for repelling hot water. Nature communications, 10(1), 1-7. 2019.

Presenters

  • Timothée MOUTERDE

    Department of Mechanical Engineering, The University of Tokyo, Japan

Authors

  • Timothée MOUTERDE

    Department of Mechanical Engineering, The University of Tokyo, Japan

  • Pierre Lecointre

    PMMH (ESPCI Paris) - LadHyX (Ecole polytechnique)

  • Gaëlle Lehoucq

    Thales Research and Technology, Palaiseau, France

  • Antonio Checco

    State Univ of NY - Stony Brook

  • Christophe Clanet

    LadHyX, UMR 7646 du CNRS, Ecole polytechnique, 91128 Palaiseau, France, Ecole polytechnique, PMMH (ESPCI Paris) - LadHyX (Ecole polytechnique), LadHyX, Ecole polytechnique, France, LadHyX - Département de Mécanique, Ecole polytechnique, 91128 Palaiseau CEDEX, France

  • David Quere

    ESPCI Paris, École polytechnique, PMMH, UMR 7636 du CNRS, ESPCI-PSL, Paris 75005, College de France, PMMH (ESPCI Paris) - LadHyX (Ecole polytechnique)