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Dynamics at the crystal-melt interface in a supercooled chalcogenide liquid near the glass transition.


ABSTRACT: Direct quantitative measurements of nanoscale dynamical processes associated with structural relaxation and crystallization near the glass transition are a major experimental challenge. These type of processes have been primarily treated as macroscopic phenomena within the framework of phenomenological models and bulk experiments. Here, we report x-ray photon correlation spectroscopy measurements of dynamics at the crystal-melt interface during the radiation induced formation of Se nano-crystallites in pure Se and in binary AsSe4 glass-forming liquids near their glass transition temperature. We observe a heterogeneous dynamical behaviour where the intensity correlation functions g2(q, t) exhibits either a compressed or a stretched exponential decay, depending on the size of the Se nano-crystallites. The corresponding relaxation timescale for the AsSe4 liquid increases as the temperature is raised, which can be attributed to changes in the chemical composition of the melt at the crystal-melt interface with the growth of the Se nano-crystallites.

SUBMITTER: Li J 

PROVIDER: S-EPMC7125219 | biostudies-literature | 2020 Apr

REPOSITORIES: biostudies-literature

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Dynamics at the crystal-melt interface in a supercooled chalcogenide liquid near the glass transition.

Li Jianheng J   Jangid Rahul R   Zhu Weidi W   Kohne Chris C   Fluerasu Andrei A   Zhang Yugang Y   Sen Sabyasachi S   Kukreja Roopali R  

Scientific reports 20200403 1


Direct quantitative measurements of nanoscale dynamical processes associated with structural relaxation and crystallization near the glass transition are a major experimental challenge. These type of processes have been primarily treated as macroscopic phenomena within the framework of phenomenological models and bulk experiments. Here, we report x-ray photon correlation spectroscopy measurements of dynamics at the crystal-melt interface during the radiation induced formation of Se nano-crystall  ...[more]

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