2–7 Jun 2019
Simon Fraser University
America/Vancouver timezone
Welcome to the 2019 CAP Congress Program website! / Bienvenue au siteweb du programme du Congrès de l'ACP 2019 !

Session

M1-9 Soft Condensed Matter I (DCMMP) | Matière condensée molle I (DPMCM)

M1-9
3 Jun 2019, 10:45
Simon Fraser University

Simon Fraser University

Conveners

M1-9 Soft Condensed Matter I (DCMMP) | Matière condensée molle I (DPMCM)

  • Iain MacKenzie (TRIUMF)

Presentation materials

There are no materials yet.

  1. Steven Blaber (University of Waterloo)
    03/06/2019, 11:00
    Condensed Matter and Materials Physics / Physique de la matière condensée et matériaux (DCMMP-DPMCM)
    Oral Competition (Graduate Student) / Compétition orale (Étudiant(e) du 2e ou 3e cycle)

    The equilibrium phase behaviour of a semi-dilute, liquid crystalline (LC) polymer brush is investigated, using self-consistent field theory with wormlike chains and implicit solvent. For good solvent conditions, the isotropic interactions favor a stretched brush while the anisotropic LC interactions favor collapsing into a high-density nematic state. By allowing the nematic director to orient...

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  2. Prof. John Frostad (University of British Columbia)
    03/06/2019, 11:15
    Condensed Matter and Materials Physics / Physique de la matière condensée et matériaux (DCMMP-DPMCM)
    Invited Speaker / Conférencier(ère) invité(e)

    Micro-capsules are increasingly being studied as models for cells, as drug delivery vehicles, and even as devices for enhanced oil recovery form porous substrates. As such, understanding of their mechanical properties is critical for rational design and optimal performance. Here we describe experiments using a Cantilevered-Capillary Force Apparatus to probe the dynamic (or complex) modulus of...

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  3. Mr Mpumelelo Matse (Simon Fraser University)
    03/06/2019, 11:45
    Condensed Matter and Materials Physics / Physique de la matière condensée et matériaux (DCMMP-DPMCM)
    Oral not-in-competition (Graduate Student) / Orale non-compétitive (Étudiant(e) du 2e ou 3e cycle)

    Electrokinetic transport phenomena, predominantly realized in charged polymeric and porous media, offer possibilities for applications in nanofluidic systems, energy harvesting and biosensing. In this work, we present a theoretical and numerical study of nonlinear coupling between wall deformation and the flows of water and ions in a charged, deformable nanochannel. The classical...

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