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Glassy States in Asymmetric Mixtures of Soft and Hard Colloids
Author(s) -
Domenico Truzzolillo,
Daniela Marzi,
John Marakis,
Barbara Capone,
Manuél Camargo,
Abdul Munam,
Firmin Moingeon,
Mario Gauthier,
Christos N. Likos,
Dimitris Vlassopoulos
Publication year - 2013
Publication title -
physical review letters
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.688
H-Index - 673
eISSN - 1079-7114
pISSN - 0031-9007
DOI - 10.1103/physrevlett.111.208301
Subject(s) - colloid , binodal , rheology , materials science , soft matter , chemical physics , soft materials , polymer , star polymer , coupling (piping) , phase (matter) , statistical physics , nanotechnology , phase diagram , physics , copolymer , composite material , chemistry , quantum mechanics
International audienceBy employing rheological experiments, mode coupling theory, and computer simulations based on realistic coarse-grained models, we investigate the effects of small, hard colloids on the glassy states formed by large, soft colloids. Multiarm star polymers mimic hard and soft colloids by appropriately varying the number and size of their arms. The addition of hard colloids leads, depending on their concentration, to either melting of the soft glass or the emergence of two distinct glassy states.We explain our findings by depletion of the colloids adjacent to the stars, which leads to an arrested phase separation when the repulsive glass line meets the demixing binodal. The parameter-free agreement between experiment, theory, and simulations suggests the generic nature of our results and opens the route for designing soft-hard colloidal composites with tunable rheology

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