We investigate mixing effects on the glass state of binary colloidal hard-sphere-like mixtures with large size asymmetry, at a constant volume fraction φ = 0.61. The structure, dynamics and viscoelastic response as a function of mixing ratio reflect a transition between caging by one or the other component. The strongest effect of mixing is observed in systems dominated by caging of the large component. The possibility to pack a large number of small spheres in the free volume left by the large ones induces a pronounced deformation of the cage of the large spheres, which become increasingly delocalised. This results in faster dynamics and a strong reduction of the elastic modulus. When the relative volume fraction of small spheres exceeds that of large spheres, the small particles start to form their own cages, slowing down the dynamics and increasing the elastic modulus of the system. The large spheres become the minority and act as an impurity in the ordering beyond the first neighbour shell, i.e. the cage, and do not directly affect the particle organisation on the cage level. In such a system, when shear at constant rate is applied, melting of the glass is observed due to facilitated out-of-cage diffusion which is associated with structural anisotropy induced by shear.

Glasses of dynamically asymmetric binary colloidal mixtures: Quiescent properties and dynamics under shear / Sentjabrskaja T.; Guu D.; Lettinga P.M.; Egelhaaf S.U.; Laurati M.. - ELETTRONICO. - 1518:(2013), pp. 206-213. (Intervento presentato al convegno 4th International Symposium on Slow Dynamics in Complex Systems: Keep Going Tohoku) [10.1063/1.4794569].

Glasses of dynamically asymmetric binary colloidal mixtures: Quiescent properties and dynamics under shear

Laurati M.
2013

Abstract

We investigate mixing effects on the glass state of binary colloidal hard-sphere-like mixtures with large size asymmetry, at a constant volume fraction φ = 0.61. The structure, dynamics and viscoelastic response as a function of mixing ratio reflect a transition between caging by one or the other component. The strongest effect of mixing is observed in systems dominated by caging of the large component. The possibility to pack a large number of small spheres in the free volume left by the large ones induces a pronounced deformation of the cage of the large spheres, which become increasingly delocalised. This results in faster dynamics and a strong reduction of the elastic modulus. When the relative volume fraction of small spheres exceeds that of large spheres, the small particles start to form their own cages, slowing down the dynamics and increasing the elastic modulus of the system. The large spheres become the minority and act as an impurity in the ordering beyond the first neighbour shell, i.e. the cage, and do not directly affect the particle organisation on the cage level. In such a system, when shear at constant rate is applied, melting of the glass is observed due to facilitated out-of-cage diffusion which is associated with structural anisotropy induced by shear.
2013
4th International Symposium on Slow Dynamics in Complex Systems: proceedings
4th International Symposium on Slow Dynamics in Complex Systems: Keep Going Tohoku
Goal 9: Industry, Innovation, and Infrastructure
Sentjabrskaja T.; Guu D.; Lettinga P.M.; Egelhaaf S.U.; Laurati M.
File in questo prodotto:
File Dimensione Formato  
AIP_Conf_Proc_1518_206_2013.pdf

accesso aperto

Descrizione: Articolo principale
Tipologia: Versione finale referata (Postprint, Accepted manuscript)
Licenza: Tutti i diritti riservati
Dimensione 333.73 kB
Formato Adobe PDF
333.73 kB Adobe PDF

I documenti in FLORE sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/1175731
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 11
  • ???jsp.display-item.citation.isi??? 10
social impact