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Structural phase transformations in crystalline gallium orthophosphate

机译:结晶正磷酸镓镓中的结构相变

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Structural changes proceeding in gallium orthophosphate crystals under thermal treatment have been studied by means of thermoanalytical methods and X-ray diffraction. The samples were characterized with respect to their water content by means of IR absorption. The occurrence of structural changes has been investigated as a function of thermal history, annealing temperature, annealing duration, and cooling rate. Freshly crystallized material shows always the low-quartz analogue modification, During the first heating a transformation into the high-cristobalite form proceeds at about 970 degrees C. This structural change is connected with a weight loss and the emanation of vapor phase species, both indicating the release of water from the samples. Cooling down the high-cristobalite form can lead either to the metastable low-cristobalite or the thermodynamically stable low-quartz modification. The cooling rate is the deciding factor for the occurrence of one or the other phase. The stability range of crystals originally in the low-cristobalite form has been studied by various annealing procedures. It is concluded that the low-quartz structure is thermodynamically stable and can be deliberately obtained between room temperature and about 930 degrees C, while the high-cristobalite modification is stable at higher temperatures. The low-cristobalite form, observed at room temperature nearly without any exception after a first high-temperature treatment, is only metastable. Its occurrence can be suppressed by proper thermal processing. (C) 2000 Academic Press. [References: 20]
机译:通过热分析方法和X射线衍射研究了正磷酸镓晶体在热处理条件下进行的结构变化。通过红外吸收对样品的含水量进行表征。已经研究了结构变化的发生与热历史,退火温度,退火持续时间和冷却速率的关系。新鲜结晶的材料始终显示出低石英的类似物修饰,在第一次加热过程中,大约在970摄氏度时转变为高方英石形式。这种结构变化与重量减轻和气相物质的散发有关,两者均表明样品中水的释放。冷却高方石英形式可以导致亚稳态低方石英或热力学稳定的低石英改性。冷却速率是一个或另一个相发生的决定因素。已经通过各种退火程序研究了最初为低方英石形式的晶体的稳定性范围。结论是,低石英结构是热力学稳定的,并且可以在室温至约930摄氏度之间有意获得,而高方石英的改性在较高温度下是稳定的。在室温下观察到的低方英石形式在第一次高温处理后几乎没有任何例外,只是亚稳态的。通过适当的热处理可以抑制其发生。 (C)2000年学术出版社。 [参考:20]

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