Exploring the Phase Transformation Mechanism of Titanium Dioxide by High Temperature in Situ Method

Shengcai Wu, Xuan Luo, Yong-fu Long, Benjun Xu
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引用次数: 6

Abstract

In this study, the real-time phase measurement of titanium dioxide under different temperature conditions was tested by real-time measurement of high temperature sample stage and Rietveld refinement method. The real-time phase transformation process of titanium dioxide under high temperature conditions was analyzed. The results show that the (101) crystal plane of anatase titanium dioxide is most stable when the amorphous metatitanic acid is transformed into anatase titanium dioxide during the phase transformation of titanium dioxide, and the growth of anatase has a preferred orientation along the c-axis. In the case of anatase-type titanium dioxide to rutile-type titanium dioxide, the (110) crystal plane of rutile-type titanium dioxide is the most stable, but the rutile type has no preferred orientation.
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高温原位法研究二氧化钛相变机理
本研究采用高温样品级实时测量和Rietveld精细化法,对不同温度条件下二氧化钛的实时相位测量进行了测试。分析了二氧化钛在高温条件下的实时相变过程。结果表明:在二氧化钛相变过程中,非晶态偏钛酸转变为锐钛矿型二氧化钛时,锐钛矿的(101)晶面最稳定,且锐钛矿沿c轴方向优先生长;在锐钛型钛白粉与金红石型钛白粉的对比中,金红石型钛白粉的(110)晶面最稳定,而金红石型没有优选取向。
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