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Micro/Nano Flow: Solid/Liquid Interface

ORAL · L19 · ID: 680727





Presentations

  • Capillary imbibition in lubricant-coated channels

    ORAL

    Presenters

    • Ignacio Pagonabarraga

      Ecole Polytechnique Federale de Lausanne

    Authors

    • Ignacio Pagonabarraga

      Ecole Polytechnique Federale de Lausanne

    • Rodrigo Ledesma-Aguilar

      The University of Edinburgh, University of Edinburgh

    • Segi Granados-Leyva

      University of Barcelona

    • Aurora Hernandez-Machado

      University of Barcelona

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  • Pinning and its role in the control of droplet motion on solid substrates

    ORAL

    Publication: P. E. Theodorakis, A. Amirfazli, B. Hu, Z. Che, Langmuir 37, 4248-4255 (2021) doi: 10.1021/acs.langmuir.1c00215

    Presenters

    • Panagiotis E Theodorakis

      Institute of Physics Polish Academy of S, Institute of Physics, Polish Academy of Sciences

    Authors

    • Panagiotis E Theodorakis

      Institute of Physics Polish Academy of S, Institute of Physics, Polish Academy of Sciences

    • Alidad Amirfazli

      York Univ

    • Bin Hu

      Flow Capture AS

    • Zhizhao Che

      Tianjin University

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  • The Molecular Origin of Slip

    ORAL

    Publication: Cam, Metehan, Seth Lichter, and Christopher G. Goedde. \Kink propagation and solute partitioning in an atomic monolayer on a substrate." Physical Review E 104.2 (2021): L022801.<br><br>Cam, Metehan, Christopher Goedde, and Seth Lichter. \Slip at the liquid-solid interface reveals soliton propagation and solute partitioning" Bulletin of the American Physical Society, APS DFD (2021).

    Presenters

    • Metehan Cam

      Northwestern University

    Authors

    • Metehan Cam

      Northwestern University

    • Christopher G Goedde

      DePaul University, Physics Department

    • Seth H Lichter

      Northwestern University

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  • Experimental study of fluid slip on drag reducing polymeric surfaces patterned by CO<sub>2</sub> laser system

    ORAL

    Presenters

    • Diva Pradhan

      School of Mechanical Engineering, Sungkyunkwan University, Republic of Korea

    Authors

    • Diva Pradhan

      School of Mechanical Engineering, Sungkyunkwan University, Republic of Korea

    • Jinkee Lee

      Sungkyunkwan Univ, School of Mechanical Engineering, Sungkyunkwan University, Republic of Korea and Institute of Quantum Biophysics, Sungkyunkwan University, Republic of Korea, School of Mechanical Engineering, Sungkyunkwan University and Institute of Quantum Biophysics, Sungkyunkwan University

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  • A multiscale model to describe the wetting of solid surfaces

    ORAL

    Publication: 1. Cardellini et al. 'Integrated Molecular Dynamics and Experimental Approach to Characterize Low-Free-Energy Perfluoro-Decyl-Acrylate (PFDA) Coated Silicon'. Materials & Design 208 (2021) 109902.<br>2. Dreher et al. 'Calculation of the interfacial tension of the graphene-water interaction by molecular simulations' J. Chem. Phys. 150, 014703 (2019).<br>3. Sarkar et al 'A new methodology for measuring solid/liquid interfacial energy'. In submission at PNAS.<br>4. T.D. Blake 'The physics of moving wetting lines'. Journal of Colloid and Interface Science 299 (2006) 1–13.

    Presenters

    • Francesco Maria m Bellussi

      Politecnico di Torino

    Authors

    • Francesco Maria m Bellussi

      Politecnico di Torino

    • Sreya Sarkar

      University of Illinois at Chicago, Department of Mechanical and Industrial Engineering, University of Illinois at Chicago, Chicago, Illinois, 60607, US

    • Harshad Gaikwad

      University of Illinois at Chicago

    • Matteo Fasano

      Politecnico di Torino

    • Pietro Asinari

      Politecnico di Torino

    • Constantine M Megaridis

      University of Illinois at Chicago

    View abstract →