Rolling and ageing in T-ramp soft adhesion
Abstract
Immediately before adsorption to a horizontal substrate, sinking polymer-coated colloids can undergo a complex sequence of landing, jumping, crawling and rolling events. Using video tracking we studied the soft adhesion to a horizontal flat plate of micron-size colloids coated by a controlled molar fraction of the polymer PLL-g-PNIPAM which is temperature sensitive. We ramp the temperature from below to above C, at which the PNIPAM polymer undergoes a transition triggering attractive interaction between microparticles and surface. The adsorption rate, the effective in-plane () diffusion constant and the average residence time distribution over were extracted from the Brownian motion records during last seconds before immobilisation. Experimental data are understood within a rate-equations based model that includes ageing effects and includes three populations: the untethered, the rolling and the arrested colloids. We show that pre-adsorption dynamics casts analyze a characteristic scaling function proportional to the number of available PNIPAM patches met by soft contact during Brownian rolling. In particular, the increase of in-plane diffusivity with increasing is understood: the stickiest particles have the shortest rolling regime prior to arrest, so that their motion is dominated by untethered phase.
Keywords
Cite
@article{arxiv.1709.02971,
title = {Rolling and ageing in T-ramp soft adhesion},
author = {Giuseppe Boniello and Christophe Tribet and Emmanuelle Marie and Vincent Croquette and Dražen Zanchi},
journal= {arXiv preprint arXiv:1709.02971},
year = {2018}
}