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A neutron diffraction study of the thermal stability of the alpha-quartz-type structure in germanium dioxide

机译:中子衍射研究二氧化锗中α-石英型结构的热稳定性

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The structure of the alpha-quartz-type form of germanium dioxide was refined at room temperature and up to 1344 K by the Rietveld method using time-of-flight neutron powder diffraction data. The intertetrahedral bridging angle theta and the tilt angle delta exhibit thermal stabilities that are among the highest observed in alpha-quartz homeotypes. The temperature dependence of these angles is found to be a function of the structural distortion in these materials. Structure-property relationships predict that due to its highly distorted structure, germanium dioxide is potentially a high-performance piezoelectric material. The high stability of the above structural parameters as a function of temperature infers that the corresponding piezoelectric properties should also be retained under these conditions. At the present time, problems related to phase stability and crystal growth need to be resolved before the alpha-quartz-type form of germanium dioxide can be used as a piezoelectric material. (C) 2002 Elsevier Science (USA). [References: 33]
机译:使用飞行时间中子粉末衍射数据,通过Rietveld方法在室温和高达1344 K的条件下,精制了二氧化锗的α-石英类型的结构。四面体的桥接角θ和倾斜角δ表现出的热稳定性在α-石英同型基因中最高。发现这些角度的温度依赖性是这些材料中结构变形的函数。结构性质关系预测,由于其高度变形的结构,二氧化锗可能是高性能的压电材料。上述结构参数作为温度的函数的高稳定性表明,在这些条件下也应保持相应的压电性能。目前,在将α-石英类型的二氧化锗用作压电材料之前,需要解决与相稳定性和晶体生长有关的问题。 (C)2002 Elsevier Science(美国)。 [参考:33]

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