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用德拜散射方程法研究TiO光催化剂的结构、形态和刻面。P25和P90的研究案例

Structure, Morphology, and Faceting of TiO Photocatalysts by the Debye Scattering Equation Method. The P25 and P90 Cases of Study.

作者信息

Bertolotti Federica, Vivani Anna, Moscheni Daniele, Ferri Fabio, Cervellino Antonio, Masciocchi Norberto, Guagliardi Antonietta

机构信息

Dipartimento di Scienza e Alta Tecnologia, To.Sca.Lab & INSTM, Università dell'Insubria, via Valleggio 11, 22100 Como, Italy.

SLS, Laboratory for Synchrotron Radiation-Condensed Matter, Paul Scherrer Institut, 5232 Villigen, Switzerland.

出版信息

Nanomaterials (Basel). 2020 Apr 13;10(4):743. doi: 10.3390/nano10040743.

Abstract

Characterization of functional nanocrystalline materials in terms of quantitative determination of size, size dispersion, type, and extension of exposed facets still remains a challenging task. This is particularly the case of anisotropically shaped nanocrystals (NCs) like the TiO photocatalysts. Here, commercially available P25 and P90 titania nanopowders have been characterized by wide-angle X-ray total scattering techniques. Synchrotron data were modelled by the reciprocal space-based Debye scattering equation (DSE) method using atomistic models of NC populations (simultaneously carrying atomic and nanoscale structural features) for both anatase and rutile phases. Statistically robust descriptors are provided of size, morphology, and {101} vs. {001} facet area of truncated tetragonal bipyramids for anatase, jointly to polymorph quantification. The effects of using the proper NC shape on the X-ray diffraction pattern are analyzed in depth through DSE simulations by considering variable bipyramid aspect ratios (resulting in different {101} vs. {001} surface) and relative dispersion in a bivariate manner. We demonstrate that using prismatic NCs having equal volume and aspect ratio as bipyramids provides reasonably accurate sizes and {101} and {001} surface areas of the parent morphology.

摘要

在尺寸、尺寸分散性、类型以及暴露晶面的范围等方面对功能性纳米晶体材料进行定量测定,仍然是一项具有挑战性的任务。对于像TiO光催化剂这样的各向异性形状的纳米晶体(NCs)来说尤其如此。在这里,通过广角X射线全散射技术对市售的P25和P90二氧化钛纳米粉末进行了表征。利用基于倒易空间的德拜散射方程(DSE)方法,通过锐钛矿相和金红石相的NC群体原子模型(同时具有原子和纳米尺度的结构特征)对同步加速器数据进行建模。提供了关于锐钛矿截断四方双锥体的尺寸、形态以及{101}与{001}晶面面积的统计稳健描述符,并结合多晶型定量分析。通过考虑可变双锥体纵横比(导致不同的{101}与{001}表面)和双变量方式的相对分散性,通过DSE模拟深入分析了使用适当的NC形状对X射线衍射图谱的影响。我们证明,使用具有与双锥体相等体积和纵横比的棱柱形NCs能够提供母体形态的合理准确尺寸以及{101}和{001}表面积。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8c2/7221600/454c2815c60c/nanomaterials-10-00743-g001.jpg

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