Glass–glass transition during aging of a colloidal clay

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作者
Roberta Angelini
Emanuela Zaccarelli
Flavio Augusto de Melo Marques
Michael Sztucki
Andrei Fluerasu
Giancarlo Ruocco
Barbara Ruzicka
机构
[1] IPCF-CNR,Dipartimento di Fisica
[2] UOS Roma,undefined
[3] P.le Aldo Moro 2,undefined
[4] Sapienza Università di Roma,undefined
[5] P.le Aldo Moro 2,undefined
[6] ISC-CNR,undefined
[7] UOS Sapienza,undefined
[8] P.le Aldo Moro 2,undefined
[9] Center for Life NanoScience,undefined
[10] IIT@Sapienza,undefined
[11] Istituto Italiano di Tecnologia,undefined
[12] Viale Regina Elena 291,undefined
[13] ESRF-The European Synchrotron,undefined
[14] Brookhaven National Laboratory,undefined
[15] NSLS-II,undefined
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摘要
Colloidal suspensions are characterized by a variety of microscopic interactions, which generate unconventional phase diagrams encompassing fluid, gel and glassy states and offer the possibility to study new phase and/or state transitions. Among these, glass–glass transitions are rare to be found, especially at ambient conditions. Here, through a combination of dilution experiments, X-ray photon correlation spectroscopy, small angle X-ray scattering, rheological measurements and Monte Carlo simulations, we provide evidence of a spontaneous glass–glass transition in a colloidal clay. Two different glassy states are distinguished with evolving waiting time: a first one, dominated by long-range screened Coulombic repulsion (Wigner glass) and a second one, stabilized by orientational attractions (Disconnected House of Cards glass), occurring after a much longer time. These findings may have implications for heterogeneously charged systems out-of-equilibrium and for applications where a fine control of the local order and/or long term stability of the amorphous materials are required.
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