使用HighScore Plus软件对TiO2中的锐钛矿、板岩、金红石和非晶相含量进行简单而完整的定量分析

Chemistry of Inorganic Materials Pub Date : 2025-04-01 Epub Date: 2025-01-04 DOI:10.1016/j.cinorg.2024.100086
F. El Koulali , M. Ouzzine , L. Cano-Casanova , M.C. Román-Martínez , M.A. Lillo-Ródenas
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摘要

x射线衍射用于表征tio2基材料的晶体组成,但通过简单的计算和工具来确定非晶相的百分比并不直接。本研究分析了HighScore Plus软件的使用,对大量的二氧化钛材料进行了完整的结构表征,这些材料是在我们的实验室通过溶胶-凝胶和水热方法制备的。目的不仅是评估结晶相的含量,还包括非晶相的含量。以CaF2作为基准材料,假设其结晶度为100%。通过对锐钛矿、板岩和金红石的x射线衍射峰进行反卷积,将HighScore Plus软件与我们研究组的Cano-Casanova等人开发的方法所得结果进行比较,发现两种方法的结果非常相似,HighScore Plus软件可以明确地用于测定二氧化钛中非晶相的含量,即使对于具有三种结晶相的材料也是如此。相当重叠的峰,和/或具有高非晶相含量,这不能轻易地用Cano-Casanova等人的方法来表征。因此,HighScore Plus方法获得了5- 51%范围内的非晶相含量,而之前开发的方法则为8 - 47%。我们的研究还强调了使用tio2基材料的BET表面积来轻松估计非晶相百分比的可能性。
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Use of the HighScore Plus software for an easy and complete quantification of the anatase, brookite, rutile, and amorphous phase content in TiO2
X-ray diffraction is used to characterize the crystalline composition of TiO2-based materials, but to determine the percentage of amorphous phase by simple calculations and tools is not straightforward. The present study analyzes the use of the software HighScore Plus to perform a complete structural characterization of a large set of TiO2-materials, commercial and prepared in our laboratory by sol-gel and hydrothermal methodologies. The aim is to evaluate not only the crystalline phases content, but also the amorphous phase content. CaF2 is used as a reference material, and its crystallinity is assumed to be 100 ​%. The comparison of the results obtained with the software HighScore Plus with those of the method developed in our research group by Cano-Casanova et al., based on the deconvolution of the XRD peaks of anatase, brookite, and rutile, has shown that the results of both methods are very similar, and the HighScore Plus software can definitively be used for an easy determination of the amorphous phase content in titanium dioxide, even for materials with the three crystalline phases, rather overlapping peaks, and/or with a high amorphous phase content, which cannot be easily characterized by the method by Cano-Casanova el al. Thus, amorphous phase contents in the 5-51 ​% range are obtained with the HighScore Plus method, in contrast with 8–47 ​% for the previously developed methodology. Our study has also highlighted the possibility of using the BET surface area of TiO2-based materials for an easy estimation of the percentage of amorphous phase.
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