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首页> 外文期刊>Ionics >Improving the electrochemistry and microstructure of nickel electrode by deposition on anodized titanium substrate for the electrocatalytic oxidation of methanol and ethanol
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Improving the electrochemistry and microstructure of nickel electrode by deposition on anodized titanium substrate for the electrocatalytic oxidation of methanol and ethanol

机译:通过在阳极氧化钛基底上沉积甲醇和乙醇的电催化氧化改善镍电极的电化学和微观结构。

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The electrodeposition process of nickel and the substrate used for the electrodeposition can be improved to obtain an effective catalyst for methanol oxidation. Thus, nanoparticles of nickel have been uniformly electrodepo sited on the surface of previously anodized titanium at 5 V during 1 h. The optimized microstructure has been studied by using scanning electron microscopy (SEM), X-ray photoelectron spectroscopy (XPS), and X-ray diffraction (XRD). The XPS and argon-ion etching experiments have revealed the composition profile of the titanium/titaniaickel thin film electrode. Metallic Ni is detected by XRD. The nickel particles dispersed in a porous TiO2 substrate have great catalytic activity for methanol oxidation in basic solution and through the redox couple NiO(OH)/Ni(OH)2. The optimized titania substrate yields to electrodes (crystalline titanium/amorphous titania/ nanocrystalline nickel) with higher catalytic activity than non-anodized metallic titanium (titaniumickel). However, further oxidation and thickening of the titania film drives to poorer electrochemical behavior. The SEM and EDS results show that the nickel particles exhibit certain tendency to agglomerate and to form spherical particles of around 2 urn. This electrode material also is active to oxidize ethanol, but this activity is poorer.
机译:可以改进镍的电沉积工艺和用于电沉积的基材,以获得有效的甲醇氧化催化剂。因此,在1 h内,镍纳米颗粒已在5 V下均匀地电沉积在先前阳极氧化的钛表面上。通过使用扫描电子显微镜(SEM),X射线光电子能谱(XPS)和X射线衍射(XRD)研究了优化的微观结构。 XPS和氩离子蚀刻实验已经揭示了钛/二氧化钛/镍薄膜电极的组成轮廓。用XRD检测金属Ni。分散在多孔TiO2基材中的镍颗粒具有很大的催化活性,可通过碱性氧化还原反应中的NiO(OH)/ Ni(OH)2氧化甲醇。优化的二氧化钛基材比非阳极氧化的金属钛(钛/镍)对电极(晶体钛/非晶态二氧化钛/纳米晶体镍)的催化活性更高。然而,二氧化钛膜的进一步氧化和增稠导致较差的电化学行为。 SEM和EDS结果表明,镍颗粒表现出一定的团聚趋势并形成约2μm的球形颗粒。该电极材料也具有氧化乙醇的活性,但是这种活性较差。

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