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首页> 外文期刊>Journal of Applied Crystallography >Nonstoichiometry, amorphicity and microstructural evolution during phase transformations of photocatalytic titania powders
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Nonstoichiometry, amorphicity and microstructural evolution during phase transformations of photocatalytic titania powders

机译:光催化二氧化钛粉末相变过程中的非化学计量,非晶态和微观结构演变

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摘要

The performance of photocatalytic titania powders is regulated, in part, by nonstoichiometry and the proportions of the crystalline and amorphous components. These variables can be quantitatively established by Rietveld analysis of diffraction data when internal standards are used to fix absolutely the crystallochemical parameters during quantitative phase analysis and to correct for mass absorption. Here, fixed-wavelength neutron and multiple-wavelength X-ray powder diffraction are used to assess phase development in alkoxide-derived titania gel as a function of temperature. In this manner, it is shown that the amorphous gel is progressively replaced by anatase for temperatures <= 773 K, and that during the reconstructive transition to rutile (773-873 K) aperiodicity increases as anatase is broken down to clusters of TiO6 octahedra, with a fraction (similar to 10 wt%) of this short-range order persisting to 1273 K. Microabsorption correlates with X-ray energy, leading to systematic aberrations in the Rietveld scale factors connected to microstructural evolution which accompanies phase development during heat treatment. These changes are consistent with encapsulation of anatase and rutile by ubiquitous non-diffracting materials. The appearance of significant quantities of an intervening disordered phase during the dimorph transformation is supportive of recent kinetic models; however, its impact on catalytic activity remains to be determined.
机译:光催化二氧化钛粉末的性能部分受非化学计量以及结晶和无定形组分的比例调节。当使用内标在定量相分析过程中绝对固定晶体化学参数并校正质量吸收时,可以通过衍射数据的Rietveld分析来定量建立这些变量。在此,使用固定波长中子和多波长X射线粉末衍射来评估醇盐衍生的二氧化钛凝胶中的相发展随温度的变化。以这种方式显示,对于温度<= 773 K,无定形凝胶逐渐被锐钛矿替代,并且在向金红石(773-873 K)的重建过渡期间,随着锐钛矿分解成TiO6八面体簇,非周期性增加,其短程有一部分(约占10 wt%)持续到1273K。微吸收与X射线能量相关,导致Rietveld比例因子的系统像差与热处理过程中相发展伴随的微观结构演变有关。这些变化与无处不在的无衍射材料对锐钛矿和金红石的封装相一致。在双晶转变过程中大量无序相的出现支持了最近的动力学模型。然而,其对催化活性的影响尚待确定。

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