Rheology of Self-Assembling Colloidal Chains

ORAL

Abstract

We probe the rheology of self-assembling chains of ``pacman'' particles using a Zimm viscometer, a modified Couette apparatus. Pacman particles are microscopic spherical particles specially designed to have a spherical indentation on their surface. In the presence of a depletant, overlap between the indentation and another particle's surface maximizes the excluded volume between the two interacting particles, resulting in a selective attraction between them. Careful tuning of the interaction strength in a suspension of particles induces the formation of long chains. Shearing this material can twist, stretch, and break the chains, causing the material to exhibit unique rheological properties.

*NSF Grant No. DMR-1105455

Authors

  • Kazem Edmond

    • New York University
  • Stefano Sacanna

    • New York University
    • NYU
  • Zachary D. Forbes

    • New York University
  • Andrew D. Hollingsworth

    • New York University
  • David Pine

    • Center for Soft Matter Research, NYU
    • New York University
    • Center for Soft Matter Research, New York University, USA