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- W2147356670 endingPage "066501" @default.
- W2147356670 startingPage "066501" @default.
- W2147356670 abstract "As one increases the concentration of a colloidal suspension, the system exhibits a dramatic increase in viscosity. Structurally, the system resembles a liquid, yet motions within the suspension are slow enough that it can be considered essentially frozen. This kinetic arrest is the colloidal glass transition. For several decades, colloids have served as a valuable model system for understanding the glass transition in molecular systems. The spatial and temporal scales involved allow these systems to be studied by a wide variety of experimental techniques. The focus of this review is the current state of understanding of the colloidal glass transition. A brief introduction is given to important experimental techniques used to study the glass transition in colloids. We describe features of colloidal systems near and in glassy states, including tremendous increases in viscosity and relaxation times, dynamical heterogeneity, and ageing, among others. We also compare and contrast the glass transition in colloids to that in molecular liquids. Other glassy systems are briefly discussed, as well as recently developed synthesis techniques that will keep these systems rich with interesting physics for years to come." @default.
- W2147356670 created "2016-06-24" @default.
- W2147356670 creator A5003905275 @default.
- W2147356670 creator A5085478228 @default.
- W2147356670 date "2012-05-16" @default.
- W2147356670 modified "2023-09-30" @default.
- W2147356670 title "The physics of the colloidal glass transition" @default.
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