Dynamics and yielding of binary self-suspended nanoparticle fluids.

Agrawal, Akanksha; Yu, Hsiu-Yu; Srivastava, Samanvaya; Choudhury, Snehashis; Narayanan, Suresh; Archer, Lynden A · Soft Matter · 2015

basic_science · Level V

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Abstract

Yielding and flow transitions in bi-disperse suspensions of particles are studied using a model system comprised of self-suspended spherical nanoparticles. An important feature of the materials is that the nanoparticles are uniformly dispersed in the absence of a solvent. Addition of larger particles to a suspension of smaller ones is found to soften the suspensions, and in the limit of large size disparities, completely fluidizes the material. We show that these behaviors coincide with a speeding-up of de-correlation dynamics of all particles in the suspensions and are accompanied by a reduction in the energy dissipated at the yielding transition. We discuss our findings in terms of ligand-mediated jamming and un-jamming of hairy particle suspensions.