一种新型零热膨胀材料FeMoVO7
首发时间:2023-04-28
摘要:零热膨胀(ZTE)材料一种稀有的具有随温度变化体积近乎不变特点的特殊材料,其对于精密仪器的尺寸稳定性具有重要意义。最近,我们发现一种新型的宽温区ZTE材料FeMoVO7,其在123 - 473 K温区内,c轴轴向为负热膨胀,ac = -3.98 × 10-6 K-1,在123 - 373 K的温区内,体积为ZTE,av=1.81 × 10-6 K-1。通过X射线衍射与拉曼光谱的综合分析,确定57.67 cm-1与195.73 cm-1拉曼频移对应的两种振动模式主导了c轴的NTE,FeMoVO7的ZTE源于低频声子产生的晶格收缩与非谐作用产生的晶格膨胀的共同作用的结果。
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A new zero thermal expansion materials FeMoVO7
Abstract:Zero thermal expansion (ZTE) material is a rare special material with almost constant volume when temperature changes, which is of great significance for the dimensional stability of precision instruments. Recently, we have discovered a novel wide temperature range ZTE material FeMoVO7, which exhibits negative thermal expansion along the c-axis in the temperature range of 123-473 K, ac=-3.98 × 10-6 K-1, and exhibits volumetric ZTE in the temperature range of 123-373 K, av=1.81 × 10-6 K-1。 Through comprehensive analysis of X-ray diffraction and Raman spectroscopy, it was determined that the two vibration modes corresponding to the Raman frequency shifts of 57.67 cm-1 and 195.73 cm-1 dominate the NTE of the c-axis. And the ZTE of FeMoVO7 originates from the combined effect of lattice contraction generated by low-frequency phonons and lattice expansion generated by anharmonic interactions.
Keywords: Thermal expansion framework structure low frequency phonons transverse vibration
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