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Water adsorption on TiO2 surfaces probed by soft X-ray spectroscopies: bulk materials vs. isolated nanoparticles

机译:用软X射线光谱仪探测TiO2表面上的水吸附:散装材料与孤立的纳米颗粒

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摘要

We describe an experimental method to probe the adsorption of water at the surface of isolated, substrate-free TiO2 nanoparticles (NPs) based on soft X-ray spectroscopy in the gas phase using synchrotron radiation. To understand the interfacial properties between water and TiO2 surface, a water shell was adsorbed at the surface of TiO2 NPs. We used two different ways to control the hydration level of the NPs: in the first scheme, initially solvated NPs were dried and in the second one, dry NPs generated thanks to a commercial aerosol generator were exposed to water vapor. XPS was used to identify the signature of the water layer shell on the surface of the free TiO2 NPs and made it possible to follow the evolution of their hydration state. The results obtained allow the establishment of a qualitative determination of isolated NPs’ surface states, as well as to unravel water adsorption mechanisms. This method appears to be a unique approach to investigate the interface between an isolated nano-object and a solvent over-layer, paving the way towards new investigation methods in heterogeneous catalysis on nanomaterials.
机译:我们描述了一种基于软X射线光谱在气相中使用同步加速器辐射探测水在孤立的,无底物的TiO2纳米颗粒(NPs)表面吸附水的实验方法。为了了解水与TiO2表面之间的界面特性,在TiO2 NPs表面吸附了水壳。我们使用两种不同的方法来控制NP的水合水平:在第一种方案中,首先将溶剂化的NP干燥,而在第二种方案中,由于商业气溶胶发生器而产生的干燥NP暴露于水蒸气中。 XPS用于鉴定游离TiO2 NP表面上水层壳的特征,并使其能够追踪其水合状态的演变。获得的结果可以对孤立的NP的表面状态进行定性确定,并阐明水的吸附机理。该方法似乎是研究分离的纳米物体与溶剂覆盖层之间的界面的独特方法,为在纳米材料上进行多相催化的新研究方法铺平了道路。

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