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用离子液体对钨箔进行阳极氧化以增强光电化学应用

Anodizing Tungsten Foil with Ionic Liquids for Enhanced Photoelectrochemical Applications.

作者信息

Da Silva Elianny, Sánchez-García Ginebra, Pérez-Calvo Alberto, Fernández-Domene Ramón M, Solsona Benjamin, Sánchez-Tovar Rita

机构信息

IQCATAL Group (Heterogeneous Catalysis), Chemical Engineering Department (ETSE), Universitat de València, Av. Universitat s/n, 46100 Burjassot-Valencia, Spain.

出版信息

Materials (Basel). 2024 Mar 8;17(6):1243. doi: 10.3390/ma17061243.

Abstract

This research examines the influence of adding a commercial ionic liquid to the electrolyte during the electrochemical anodization of tungsten for the fabrication of WO nanostructures for photoelectrochemical applications. An aqueous electrolyte composed of 1.5 M methanesulfonic acid and 5% / [BMIM][BF] or [EMIM][BF] was used. A nanostructure synthesized in an ionic-liquid-free electrolyte was taken as a reference. Morphological and structural studies of the nanostructures were performed via field emission scanning electron microscopy and X-ray diffraction analyses. Electrochemical characterization was carried out using electrochemical impedance spectroscopy and a Mott-Schottky analysis. From the results, it is highlighted that, by adding either of the two ionic liquids to the electrolyte, well-defined WO nanoplates with improved morphological, structural, and electrochemical properties are obtained compared to samples synthesized without ionic liquid. In order to evaluate their photoelectrocatalytic performance, the samples were used as photocatalysts to generate hydrogen by splitting water molecules and in the photoelectrochemical degradation of methyl red dye. In both applications, the nanostructures synthesized with the addition of either of the ionic liquids showed a better performance. These findings confirm the suitability of ionic liquids, such as [BMIM][BF] and [EMIM][BF], for the synthesis of highly efficient photoelectrocatalysts via electrochemical anodization.

摘要

本研究考察了在钨的电化学阳极氧化过程中添加一种商业离子液体到电解质中,对制备用于光电化学应用的WO纳米结构的影响。使用了由1.5 M甲磺酸和5%的[BMIM][BF]或[EMIM][BF]组成的水性电解质。以在无离子液体的电解质中合成的纳米结构作为参考。通过场发射扫描电子显微镜和X射线衍射分析对纳米结构进行了形态学和结构研究。使用电化学阻抗谱和莫特-肖特基分析进行了电化学表征。结果表明,与未添加离子液体合成的样品相比,通过向电解质中添加两种离子液体中的任何一种,可获得形态、结构和电化学性能得到改善的明确的WO纳米板。为了评估它们的光电催化性能,将样品用作光催化剂,通过分解水分子来产生氢气,并用于甲基红染料的光电化学降解。在这两种应用中,添加了任何一种离子液体合成的纳米结构都表现出更好的性能。这些发现证实了离子液体,如[BMIM][BF]和[EMIM][BF],适用于通过电化学阳极氧化合成高效的光电催化剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b0d9/10972159/a7005e6e41e5/materials-17-01243-g001.jpg

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