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高度畸变的α-石英型材料 GeO2 中热稳定性的振动起源:实验和理论研究。

Vibrational origin of the thermal stability in the highly distorted α-quartz-type material GeO2: an experimental and theoretical study.

机构信息

Institut Charles Gerhardt Montpellier (ICGM), UMR 5253 CNRS-UM2-ENSCM-UM1, équipe C2M, Université Montpellier II, Place Eugène Bataillon, 34095 Montpellier cedex 5, France.

出版信息

Inorg Chem. 2013 Jun 17;52(12):7271-9. doi: 10.1021/ic4009416. Epub 2013 Jun 4.

Abstract

We report an experimental and theoretical vibrational study of the high-performance piezoelectric GeO2 material. Polarized and variable-temperature Raman spectroscopic measurements on high-quality, water-free, flux-grown α-quartz GeO2 single crystals combined with state-of-the-art first-principles calculations allow the controversies on the mode symmetry assignment to be solved, the nature of the vibrations to be described in detail, and the origin of the high thermal stability of this material to be explained. The low-degree of dynamic disorder at high-temperature, which makes α-GeO2 one of the most promising piezoelectric materials for extreme temperature applications, is found to originate from the absence of a libration mode of the GeO4 tetrahedra.

摘要

我们对高性能压电 GeO2 材料进行了实验和理论振动研究。对高质量、无水、助熔剂生长的α-石英 GeO2 单晶进行了极化和变温拉曼光谱测量,并结合最先进的第一性原理计算,解决了模对称性分配的争议,详细描述了振动的性质,并解释了该材料高热稳定性的起源。在高温下,低程度的动态无序使得α-GeO2 成为最有前途的极端温度应用压电材料之一,这是由于 GeO4 四面体不存在摆动模式所致。

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