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稀土Nd摻雜Ti/RuO2-Co3O4電極電催化性能研究
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國家自然科學(xué)基金項目(50476091);黑龍江省自然科學(xué)基金(B200401)


Electrocatalytic Activity of Titanium Based Nd-doped RuO2-Co3O4 Electrodes for Oxygen Evolution
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    摘要:

    采用熱分解法在400 ℃下制備了稀土Nd改性Ti/RuO2-Co3O4氧化物陽極,對稀土Nd摻雜量進行優(yōu)化。利用SEM、EDX及XRD等分析方法對電極表面形貌、組成及結(jié)構(gòu)進行了表征,通過開路電壓、循環(huán)伏安、極化曲線及強化電解壽命等電化學(xué)方法研究了電極的析氧催化活性及穩(wěn)定性。結(jié)果表明:稀土Nd摻雜使表面層晶粒細化,晶型飽滿,且促進活性組分RuO2向電極表面富集,增加電極催化活性中心;摻雜量為20:1時,電極析氧性能最佳,伏安電荷容量高達686 mC/cm2,反應(yīng)活化能低至16.76 kJ/mol,摻入稀土Nd后電極基體與涂層的結(jié)合力增強,電極強化電解壽命高達158 h。

    Abstract:

    Ti-supported Nd-doped RuO2-Co3O4 electrodes were prepared by thermal decomposition at 400 oC. The parameters of Nd-doping content were optimized. The morphology, the composition and the structure of the coating anode were characterized by SEM, EDX, and XRD. The electrocatalytic activity for oxygen evolution and the stability of the electrodes were studied by open-potential, cyclic voltammetry, polarization curve and damaged checking. The results show that Nb doping can lead to fine grains of surfaces and full crystals, promote RuO2 enrichment, and increase the active sites. Catalytic performance of the mixed oxide electrodes containing 20:1 Nd-doping content is the best, with the greatest voltammetric charge, 686 mC·cm-2, and the lowest apparent activation energy for oxygen evolution, 16.76 kJ/mol. The increase of binding force between the electrode substrate and the coating contribute to a longer electrode life than the blank electrode, reaching to 158 h.

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吳紅軍,王寶輝,阮 琴,騰 佳,苑丹丹.稀土Nd摻雜Ti/RuO2-Co3O4電極電催化性能研究[J].稀有金屬材料與工程,2012,41(1):49~53.[Wu Hongjun, Wang Baohui, Ruan Qin, Teng Jia, Yuan Dandan. Electrocatalytic Activity of Titanium Based Nd-doped RuO2-Co3O4 Electrodes for Oxygen Evolution[J]. Rare Metal Materials and Engineering,2012,41(1):49~53.]
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  • 收稿日期:2010-12-05
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