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Spectroscopic Investigation of Titania-Supported Gold Nanoparticles Prepared by a Modified Deposition/Precipitation Method for the Oxidation of CO

机译:通过改性沉积/沉淀法制备的二氧化钛支撑的金纳米粒子的光谱研究,用于氧化CO

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The spectroscopic characterization of a material is a fundamental tool for understanding the structure-activity correlation for catalytic purposes. Regarding supported nanoparticles, this perspective has acquired more relevance in recent years and several techniques have been employed. In this work diffuse reflectance infrared Fourier transform spectroscopy (DRIFTS), coupled with CO adsorption, was used to investigate a modified deposition/precipitation method (DP-UC) for the preparation of supported gold nanoparticles with very low metal loading (0.1-0.5wt%). This promising synthetic route involves the use of urea as basic agent and NaBH4 as chemical reductant in contrast to the traditional high-temperature reduction step. The systematic IR spectroscopic study of the Au loading was combined with CO oxidation catalytic tests. The evaluation of the results was also supported by several other techniques, such as X-ray photoelectron spectroscopy, N-2 physisorption, and transmission electron microscopy. Particular attention was given to the evaluation of the gold electronic state, surface dispersion, particle size, and the corresponding structure-activity relationship.
机译:材料的光谱表征是理解催化目的的结构活性相关性的基本工具。关于支持的纳米颗粒,近年来,这种观点获得了更多相关性,并采用了几种技术。在该工作中,使用与CO吸附相结合的漫反射反射率红外傅里叶变换光谱(漂移)来研究改性的沉积/沉淀法(DP-UC),用于制备具有非常低金属负载(0.1-0.5WT的负载的金纳米粒子(0.1-0.5wt %)。本有希望的合成路线涉及使用尿素作为基础剂和NaBH4作为化学还原剂与传统的高温降低步骤相反。将Au载荷的系统IR光谱研究与CO氧化催化试验合并。结果的评价也由其他几种技术支持,例如X射线光电子能谱,N-2物理吸附和透射电子显微镜。特别注意的是对金电子状态,表面分散,粒度和相应的结构 - 活性关系的评估。

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