首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Distinct thermal behavior of GeO_2 glass in tetrahedral, intermediate, and octahedral forms
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Distinct thermal behavior of GeO_2 glass in tetrahedral, intermediate, and octahedral forms

机译:四面体,中间体和八面体形式的GeO_2玻璃的不同热行为

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One fascinating high-pressure behavior of tetrahedral glasses and melts is the local coordination change with increasing pressure, which provides a structural basis for understanding numerous anomalies in their high-pressure properties. Because the coordination change is often not retained upon decompression, studies must be conducted in situ. Previous in situ studies have revealed that the short-range order of tetrahedrally structured glasses and melts changes above a threshold pressure and gradually transforms to an octahedral form with further pressure increase. Here, we report a thermal effect associated with the coordination change at given pressures and show distinct thermal behaviors of GeO_2 glass in tetrahedral, octahedral, and their intermediate forms. An unusual thermally induced densification, as large as 16%, was observed on a GeO_2 glass at a pressure of 5.5 gigapascal (GPa), based on in situ density and x-ray diffraction measurements at simultaneously high pressures and high temperatures. The large thermal densification at high pressure was found to be associated with the 4- to 6-fold coordination increase. Experiments at other pressures show that the tetrahedral GeO_2 glass displayed small thermal densification at 3.3 GPa arising from the relaxation of intermediate range structure, whereas the octahedral glass at 12.3 GPa did not display any detectable thermal effects.
机译:四面体玻璃和熔体的一个令人着迷的高压行为是随着压力的增加而发生的局部配位变化,这为理解其高压特性中的许多异常现象提供了结构基础。由于减压后通常不会保留协调变化,因此必须在原位进行研究。先前的原位研究表明,四面体结构的玻璃和熔体的短程顺序在阈值压力以上发生变化,并随着压力的进一步增加逐渐转变为八面体形式。在这里,我们报告了在给定压力下与配位变化相关的热效应,并显示了GeO_2玻璃在四面体,八面体及其中间形式中的独特热行为。根据在高压和高温下同时进行的原位密度和X射线衍射测量,在5.5吉帕斯卡(GPa)的压力下,在GeO_2玻璃上观察到了异常的热致密化,高达16%。发现在高压下大的热致密化与4至6倍的配位增加有关。在其他压力下的实验表明,由于中间范围结构的松弛,四面体GeO_2玻璃在3.3 GPa处显示出较小的热致密化,而在12.3 GPa下的八面体玻璃未显示任何可检测到的热效应。

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