应用于通过X射线小角散射对催化剂进行结构评估的对比变化法。

Contrast variation method applied to structural evaluation of catalysts by X-ray small-angle scattering.

作者信息

Mufundirwa Albert, Sakurai Yoshiharu, Arao Masazumi, Matsumoto Masashi, Imai Hideto, Iwamoto Hiroyuki

机构信息

Research Project Division, Japan Synchrotron Radiation Research Institute, SPring-8, Sayo-Cho, Sayo-Gun, Hyogo, 679-5198, Japan.

Fuel Cell Cutting-Edge Research Center Technology Research Association, 3147, Shimomukouyama-Cho, Kofu, Yamanashi, 400-1507, Japan.

出版信息

Sci Rep. 2024 Jan 27;14(1):2263. doi: 10.1038/s41598-024-52671-7.

Abstract

In the process of developing carbon-supported metal catalysts, determining the catalyst particle-size distribution is an essential step, because this parameter is directly related to the catalytic activities. The particle-size distribution is most effectively determined by small-angle X-ray scattering (SAXS). When metal catalysts are supported by high-performance mesoporous carbon materials, however, their mesopores may lead to erroneous particle-size estimation if the sizes of the catalysts and mesopores are comparable. Here we propose a novel approach to particle-size determination by introducing contrast variation-SAXS (CV-SAXS). In CV-SAXS, a multi-component sample is immersed in an inert solvent with a density equal to that of one of the components, thereby rendering that particular component invisible to X-rays. We used a mixture of tetrabromoethane and dimethyl sulfoxide as a contrast-matching solvent for carbon. As a test sample, we prepared a mixture of a small amount of platinum (Pt) catalyst and a bulk of mesoporous carbon, and subjected it to SAXS measurement in the absence and presence of the solvent. In the absence of the solvent, the estimated Pt particle size was affected by the mesopores, but in the presence of the solvent, the Pt particle size was correctly estimated in spite of the low Pt content. The results demonstrate that the CV-SAXS technique is useful for correctly determining the particle-size distribution for low-Pt-content catalysts, for which demands are increasing to reduce the use of expensive Pt.

摘要

在开发碳载金属催化剂的过程中,确定催化剂的粒径分布是一个关键步骤,因为该参数与催化活性直接相关。粒径分布最有效的测定方法是小角X射线散射(SAXS)。然而,当金属催化剂负载于高性能介孔碳材料上时,如果催化剂和介孔的尺寸相当,其介孔可能会导致粒径估计出现偏差。在此,我们提出一种通过引入对比变化小角X射线散射(CV-SAXS)来测定粒径的新方法。在CV-SAXS中,将多组分样品浸入一种密度与其中一种组分相等的惰性溶剂中,从而使该特定组分对X射线不可见。我们使用四溴乙烷和二甲基亚砜的混合物作为碳的对比匹配溶剂。作为测试样品,我们制备了少量铂(Pt)催化剂与大量介孔碳的混合物,并在有无溶剂的情况下对其进行SAXS测量。在无溶剂时,估计的Pt粒径受介孔影响,但在有溶剂时,尽管Pt含量低,仍能正确估计Pt粒径。结果表明,CV-SAXS技术对于正确测定低Pt含量催化剂的粒径分布很有用,目前对于减少昂贵Pt的使用需求不断增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3299/10817912/8aceaa1ab16d/41598_2024_52671_Fig1_HTML.jpg

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