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UV Raman Spectroscopic Study on TiO2.II.Effect of Nanoparticle Size on the Outer/Inner Phase Transformations

机译:TiO2的紫外拉曼光谱研究.II。纳米粒径对内外相变的影响

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The mechanism of the size-dependent outer/inner phase transformation in ultrafine TiO2 particles with narrowed size distribution was intensively investigated using UV Raman spectroscopy,X-ray diffraction,and transmission electron microscopy.Particle size is found to be the critical parameter determining the onset transition temperature and nucleation performance.The transformation temperature was decreased with the decrease of initial particle size.Rutile nucleates at interfaces of the contacting anatase grains(<60 nm).The free surface,interface,and bulk are all likely to work as rutile nucleation sites for large particles(>60 nm).Thermal stability of nanoscale titania is significantly enhanced by the presence of La2O3 even with surface coverage less than 5%,which blocks the outer/inner phase transformation of nano anatase.A model was devised to describe the phase transformation as a function of particle size and to predict the phase stability.
机译:利用紫外拉曼光谱,X射线衍射和透射电子显微镜深入研究了尺寸分布狭窄的超细TiO2颗粒中依赖于尺寸的内/外相转变的机理。发现颗粒尺寸是决定起效的关键参数。转变温度和成核性能。转变温度随初始粒径的减小而降低。金红石形核在接触锐钛矿晶粒(<60 nm)的界面处。自由表面,界面和块体都可能作为金红石形核起作用La2O3的存在,即使表面覆盖率小于5%,也可以显着提高纳米二氧化钛的热稳定性,从而阻止了纳米锐钛矿的外/内相转化。设计了一个模型来描述相变与粒径的关系,并预测相的稳定性。

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