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Composition inversion in mixtures of binary colloids and polymer

Authors :
Rattachai Pinchaipat
Isla Zhang
Nigel B. Wilding
Paul Bartlett
C. Patrick Royall
Malcolm A. Faers
Robert Evans
Source :
Zhang, I, Pinchaipat, R, Wilding, N B, Faers, M A, Bartlett, P, Evans, R & Royall, C P 2018, ' Composition inversion in mixtures of binary colloids and polymer ', Journal of Chemical Physics, vol. 148, no. 18, 184902 . https://doi.org/10.1063/1.5023393, Zhang, I, Pinchaipat, R, Wilding, N B, Faers, M A, Bartlett, P, Evans, R & Royall, C 2018, ' Composition inversion in mixtures of binary colloids and polymer ', Journal of Chemical Physics, vol. 148, no. 18, 184902 . https://doi.org/10.1063/1.5023393
Publication Year :
2018
Publisher :
arXiv, 2018.

Abstract

Understanding the phase behaviour of mixtures continues to pose challenges, even for systems that might be considered "simple". Here we consider a very simple mixture of two colloidal and one non-adsorbing polymer species which can be simplified even further to a size-asymmetrical binary mixture, in which the effective colloid-colloid interactions depend on the polymer concentration. We show that this basic system exhibits surprisingly rich phase behaviour. In particular, we enquire whether such a system features only a liquid-vapor phase separation (as in one-component colloid-polymer mixtures) or whether, additionally, liquid-liquid demixing of two colloidal phases can occur. Particle-resolved experiments show demixing-like behaviour, but when combined with bespoke Monte Carlo simulations, this proves illusory, and we reveal that only a single liquid-vapor transition occurs. Progressive migration of the small particles to the liquid phase as the polymer concentration increases gives rise to composition inversion - a maximum in the large particle concentration in the liquid phase. Near criticality the density fluctuations are found to be dominated by the larger colloids.<br />Comment: submitted to J. Chem. Phys

Details

Database :
OpenAIRE
Journal :
Zhang, I, Pinchaipat, R, Wilding, N B, Faers, M A, Bartlett, P, Evans, R & Royall, C P 2018, ' Composition inversion in mixtures of binary colloids and polymer ', Journal of Chemical Physics, vol. 148, no. 18, 184902 . https://doi.org/10.1063/1.5023393, Zhang, I, Pinchaipat, R, Wilding, N B, Faers, M A, Bartlett, P, Evans, R & Royall, C 2018, ' Composition inversion in mixtures of binary colloids and polymer ', Journal of Chemical Physics, vol. 148, no. 18, 184902 . https://doi.org/10.1063/1.5023393
Accession number :
edsair.doi.dedup.....5947355aa33041eb4c0ba847bc00e00c
Full Text :
https://doi.org/10.48550/arxiv.1801.07787