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通过径向分布函数揭示玻璃化转变时的结构变化。

Revealing Structural Changes at Glass Transition via Radial Distribution Functions.

作者信息

Ojovan Michael I, Louzguine-Luzgin Dmitri V

机构信息

Department of Materials, Imperial College London, South Kensington Campus, Exhibition Road, London SW7 2AZ, United Kingdom.

Institute of Geology of Ore Deposits, Petrography Mineralogy and Geochemistry (IGEM), Russian Academy of Sciences, 119017 Moscow, Russia.

出版信息

J Phys Chem B. 2020 Apr 16;124(15):3186-3194. doi: 10.1021/acs.jpcb.0c00214. Epub 2020 Apr 2.

Abstract

Transformation of glasses into liquids is discussed in terms of configuron (broken chemical bond or transformation of an atom from one to another atomic shell) percolation theory with structural changes caused. The first sharp diffraction minimum (FSDM) in the pair distribution function (PDF) is shown to contain information on structural changes in amorphous materials at the glass transition temperature (). A method to determine the glass transition temperature is proposed based on allocating to the temperature when a sharp kink in FSDM occurs. The method proposed is more sensitive compared with empirical criterion of Wendt-Abraham; e.g., for amorphous Ni the kink that determines is almost twice sharper. Connection between the kink in fictive temperature behavior of PDF and Wendt-Abraham criterion is discussed.

摘要

从构型子(断裂的化学键或原子从一个原子壳层到另一个原子壳层的转变)渗流理论以及由此引起的结构变化的角度讨论了玻璃向液体的转变。对分布函数(PDF)中的第一个尖锐衍射极小值(FSDM)被证明包含了在玻璃化转变温度()下非晶材料结构变化的信息。提出了一种基于将FSDM中出现尖锐扭结时的温度确定为玻璃化转变温度的方法。与温特 - 亚伯拉罕经验准则相比,所提出的方法更灵敏;例如,对于非晶态镍,确定的扭结几乎尖锐两倍。讨论了PDF的虚构温度行为中的扭结与温特 - 亚伯拉罕准则之间的联系。

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