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鈦基Ru-La-Sn涂層陽(yáng)極的電催化性能
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Electrocatalytic Activity of Titanium Based Ru-La-Sn Coating Anodes
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    摘要:

    利用熱分解法制備了不同La含量的鈦基Ru-La-Sn涂層陽(yáng)極,通過(guò)開(kāi)路電位測(cè)試、循環(huán)伏安測(cè)試、陽(yáng)極極化曲線測(cè)試和電化學(xué)交流阻抗譜測(cè)試研究了所制備涂層的電催化活性,并用掃描電鏡對(duì)涂層陽(yáng)極的表面形貌進(jìn)行了觀察。測(cè)試結(jié)果表明,制備溫度對(duì)涂層陽(yáng)極的表面形貌有很大影響,在涂層陽(yáng)極中引入La可以提高涂層陽(yáng)極的電催化活性,且La引入的最佳值為0.2(摩爾分?jǐn)?shù))。Ru-La-Sn涂層陽(yáng)極電催化性能提高的原因在于La的引入可以增加涂層的有效活性表面積。

    Abstract:

    Titanium based Ru-La-Sn coating anodes with various La compositions are prepared by thermal decomposition. The electrocatalytic activity of coating anode is investigated by open-circuit potential test, cyclic voltammetry test, anodic polarization curve test and alternation current impedance test. The morphology of the coating anode is studied by scanning electron microscope (SEM). It is shown that the prepared temperature has a great influence on the morphology of coating anode. The electrocatalytic ability of coating anode can be improved by doping with rare earth La. The highest activity of the coating anode is associated with the composition corresponding to 0.2 (at mole fraction) La. The increase of activity is attributed to the enhancement of active surface area.

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紀(jì)紅 周德瑞 王麗 周育紅.鈦基Ru-La-Sn涂層陽(yáng)極的電催化性能[J].稀有金屬材料與工程,2004,33(8):877~880.[Ji Hong, Zhou Derui, Wang Li, Zhou Yuhong. Electrocatalytic Activity of Titanium Based Ru-La-Sn Coating Anodes[J]. Rare Metal Materials and Engineering,2004,33(8):877~880.]
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  • 最后修改日期:2003-01-02
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