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Transitions in network and molecular glasses at high pressure

机译:高压下网络和分子玻璃的转变

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The use of monochromatic, micro-focused, high energy x-ray beams have been used in combination with perforated diamond anvil cells to investigate transitions in several network glasses at high pressure. Of particular interest are glasses which readily form an open network structure e.g. SiO_2, GeSe_2, BeF_2 and those which comprise of small molecular cages e.g. As_4S_3, As-4O_6. These materials have highly directional bonds and their normal pressure glassy forms tend to have a high degree of intermediate range order, signified by the existence of a first sharp diffraction peak. As the pressure is increased this peak decreases dramatically in intensity as the open regions of the network collapse. Simultaneously the (second) principal peak increases in intensity as the molecules in the glass move closer together resulting in increased extended range order. Gradual and abrupt amorphous-amorphous transitions have been observed in these binary systems, associated with both topological and local coordination number changes.
机译:使用单色,微聚焦的高能X射线束已经与穿孔金刚石砧座电池组合使用,以在高压下研究几个网络眼镜中的过渡。特别感兴趣的是玻璃,其容易形成开放网络结构。 SiO_2,GESE_2,BEF_2和包含小分子笼的那些。 AS_4S_3,AS-4O_6。这些材料具有高度定向键,它们的正常压力玻璃形式倾向于具有高度的中间范围顺序,通过存在第一尖锐的衍射峰表示。随着压力的增加,该峰值的强度随着网络崩溃的开放区域而显着降低。同时(第二)主峰值的强度随着玻璃中的分子移动在一起而导致延伸的延伸范围顺序增加。在这些二元系统中观察到逐渐和突然的非晶 - 无定形转换,与拓扑和局部协调数发生变化。

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