Journal article
A novel hybrid population balance - Brownian dynamics method for simulating the dynamics of polymer-bridged colloidal latex particle suspensions
E Hajizadeh, S Yu, S Wang, RG Larson
Journal of Rheology | JOURNAL RHEOLOGY AMER INST PHYSICS | Published : 2018
DOI: 10.1122/1.4996064
Abstract
We developed a novel hybrid population balance-Brownian dynamics (Pop-BD) simulation technique to investigate the phase behavior and linear viscoelastic response of suspensions of colloids bridged reversibly by telechelic polymers such as latex particles bridged by polyethylene oxide urethanes. The Pop-BD method couples the solution of a set of population balance equations of the bridge-to-loop exchange kinetics of the telechelic polymer chains on the latex particles with Brownian dynamics simulations governing the dynamics of the latex particles. Two relaxation times are identified, corresponding to bridge association/dissociation from the latex particle and relaxation of the transient netw..
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Awarded by National Science Foundation
Funding Acknowledgements
The authors would like to thank the Dow Chemical Company, under Grant No. 223278AE, and the National Science Foundation, under Grant No. CDS&E - 1602183 for their financial support. The authors also gratefully acknowledge the guidance, suggestions, and encouragement of Valeriy Ginzburg, Tirtha Chatterjee, Anthony Van Dyk, Alan Nakatani, and Alex Kalos of the Dow Chemical Company.