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用于水分解反应的离子液体辅助AgTaO纳米颗粒的制备:离子液体对形貌和光活性的影响。

Fabrication of ILs-Assisted AgTaO Nanoparticles for the Water Splitting Reaction: The Effect of ILs on Morphology and Photoactivity.

作者信息

Zwara Julia, Pancielejko Anna, Paszkiewicz-Gawron Marta, Łuczak Justyna, Miodyńska Magdalena, Lisowski Wojciech, Zaleska-Medynska Adriana, Grabowska-Musiał Ewelina

机构信息

Department of Environmental Technology, Faculty of Chemistry, University of Gdansk, 80-308 Gdansk, Poland.

Department of Process Engineering and Chemical Technology, Faculty of Chemistry, Gdansk University of Technology, 80-233 Gdansk, Poland.

出版信息

Materials (Basel). 2020 Sep 12;13(18):4055. doi: 10.3390/ma13184055.

Abstract

The design of an active, stable and efficient photocatalyst that is able to be used for hydrogen production is of great interest nowadays. Therefore, four methods of AgTaO perovskite synthesis, such as hydrothermal, solvothermal, sol-gel and solid state reactions, were proposed in this study to identify the one with the highest hydrogen generation efficiency by the water splitting reaction. The comprehensive results clearly show that the solid state reaction (SSR) led to the obtainment of a sample with an almost seven times higher photocatalytic activity than the other methods. Furthermore, four ionic liquids, all possessing nitrogen in the form of organic cations (two imidazoliums with different anions, ammonium and tetrazolium), were used for the first time to prepare composites consisting of AgTaO modified with IL and Pt, simultaneously. The effect of the ionic liquids (ILs) and Pt nanoparticles' presence on the structure, morphology, optical properties, elemental composition and the effectiveness of the hydrogen generation was investigated and discussed. The morphology investigation revealed that the AgTaO photocatalysts with the application of [OMIM]-cation based ILs created smaller granules (<500 nm), whereas [TBA] [Cl] and [TPTZ] [Cl] ILs caused the formation of larger particles (up to 2 μm). We found that various ILs used for the synthesis did not improve the photocatalytic activity of the obtained samples in comparison with pristine AgTaO. It was detected that the compound with the highest ability for hydrogen generation under UV-Vis irradiation was the AgTaO_0.2% Pt (248.5 μmol∙g), having an almost 13 times higher efficiency in comparison with the non-modified pristine sample. It is evidenced that the enhanced photocatalytic activity of modified composites originated mainly from the presence of the platinum particles. The mechanism of photocatalytic H production under UV-Vis light irradiation in the presence of an AgTaO_IL_Pt composite in the water splitting reaction was also proposed.

摘要

如今,设计一种能够用于制氢的活性高、稳定性好且高效的光催化剂备受关注。因此,本研究提出了四种合成AgTaO钙钛矿的方法,即水热法、溶剂热法、溶胶 - 凝胶法和固态反应法,以确定通过水分解反应产生氢气效率最高的方法。综合结果清楚地表明,固态反应(SSR)得到的样品光催化活性几乎比其他方法高七倍。此外,首次使用了四种均以有机阳离子形式含有氮的离子液体(两种带有不同阴离子的咪唑鎓盐、铵盐和四唑鎓盐)来同时制备由IL和Pt修饰的AgTaO组成的复合材料。研究并讨论了离子液体(ILs)和Pt纳米颗粒的存在对结构、形态、光学性质、元素组成以及制氢效果的影响。形态学研究表明,应用基于[OMIM]阳离子的ILs的AgTaO光催化剂形成了较小的颗粒(<500 nm),而[TBA][Cl]和[TPTZ][Cl] ILs导致形成较大的颗粒(最大可达2μm)。我们发现,与原始AgTaO相比,用于合成的各种ILs并未提高所得样品的光催化活性。检测到在紫外 - 可见光照下产氢能力最高的化合物是AgTaO_0.2% Pt(248.5 μmol∙g),与未改性的原始样品相比,其效率几乎高13倍。有证据表明,改性复合材料增强的光催化活性主要源于铂颗粒的存在。还提出了在水分解反应中,AgTaO_IL_Pt复合材料存在下紫外 - 可见光照射下光催化产氢的机理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5996/7559565/ba9b886f5eab/materials-13-04055-g001.jpg

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