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用于水分解的Ni-SrTiO光催化剂浆料失活机理的原位X射线吸收光谱研究

In Situ X-ray Absorption Spectroscopy Study of the Deactivation Mechanism of a Ni-SrTiO Photocatalyst Slurry Active in Water Splitting.

作者信息

Abudukade MemetTursun, Pinna Marco, Spanu Davide, De Amicis Giuditta, Minguzzi Alessandro, Vertova Alberto, Recchia Sandro, Ghigna Paolo, Mul Guido, Altomare Marco

机构信息

Department of Chemical Engineering, MESA+ Institute for Nanotechnology, University of Twente, P.O. Box 217, Enschede 7500 AE, The Netherlands.

Department of Science and High Technology, University of Insubria, Via Valleggio 11, Como 22100, Italy.

出版信息

J Phys Chem C Nanomater Interfaces. 2024 Sep 17;128(38):16020-16031. doi: 10.1021/acs.jpcc.4c04688. eCollection 2024 Sep 26.

Abstract

We used in situ X-ray absorption spectroscopy (XAS) to investigate the composition-performance correlation of Ni-SrTiO photocatalysts active for water splitting. After preparation and exposure to ambient conditions, the Ni particles on SrTiO consist of Ni(0) and Ni(II) phases, with a 4:1 at % ratio, in a metal/oxide core/shell configuration, as confirmed by XPS and TEM-EDX. In situ XAS experiments using an aqueous slurry of the Ni-SrTiO photocatalyst and simultaneous continuous exposure to 365 nm light with a power density of 100 mW cm and the X-rays do not reveal significant changes in oxidation state of the Ni particles. Contrarily, when the X-rays are discontinuously applied, UV excitation leads to oxidation of a significant fraction of Ni(0) to Ni(II), specifically to NiO and Ni(OH) phases, along with cocatalyst restructuring. Ni dissolution or oxidation to higher valence states (e.g., Ni(III)) was not observed. The UV light-induced oxidation of Ni(0) causes the hydrogen evolution rate to drop to similar rates as observed for pristine SrTiO, suggesting that Ni(0) is the active phase for H generation. Our results underscore the importance of assessing the effects of (continuous) X-ray exposure to (photo)catalyst-containing aqueous slurries during in situ XAS experiments, which can significantly influence the observation of compositional and structural changes in the (photo)catalysts. We ascribe this to X-ray induced water photolysis and formation of free electrons, which in this study quench SrTiO photoholes and prevent Ni oxidation.

摘要

我们使用原位X射线吸收光谱(XAS)来研究对水分解具有活性的Ni-SrTiO光催化剂的组成-性能相关性。制备并暴露于环境条件后,SrTiO上的Ni颗粒由Ni(0)和Ni(II)相组成,原子百分比比例为4:1,呈金属/氧化物核/壳结构,这通过XPS和TEM-EDX得到证实。使用Ni-SrTiO光催化剂的水浆进行原位XAS实验,并同时持续暴露于功率密度为100 mW cm的365 nm光和X射线下,未发现Ni颗粒的氧化态有显著变化。相反,当不连续施加X射线时,紫外激发会导致相当一部分Ni(0)氧化为Ni(II),具体形成NiO和Ni(OH)相,同时助催化剂发生重构。未观察到Ni溶解或氧化为更高价态(如Ni(III))。紫外光诱导的Ni(0)氧化导致析氢速率降至与原始SrTiO观察到的速率相似,这表明Ni(0)是产生H的活性相。我们的结果强调了在原位XAS实验中评估(连续)X射线暴露对含(光)催化剂水浆的影响的重要性,这可能会显著影响对(光)催化剂组成和结构变化的观察。我们将此归因于X射线诱导的水光解和自由电子的形成,在本研究中,这些自由电子淬灭了SrTiO光空穴并防止了Ni氧化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f28/11440603/b97070b3d939/jp4c04688_0001.jpg

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