碱性介质中甘油氧化反应的PtAg纳米粒子电催化剂

B. Lam, Masanobu Chiku, E. Higuchi, H. Inoue
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引用次数: 5

摘要

为提高Pt的甘油氧化反应(GOR)活性,采用湿法制备了PtAg(Pt/Ag摩尔比为3和1)合金纳米粒子负载炭黑(Pt/CB、PtAg(3:1)/CB、PtAg(1:1)/CB)催化剂。所得催化剂在200℃的N2气氛中进行热处理。通过x射线衍射和电子色散x射线光谱法证实了各PtAg/CB中Pt与Ag的合金化。热处理没有改变PtAg合金的晶体结构,但增大了合金的晶粒尺寸。x射线光电子能谱分析表明,稳定剂被完全从PtAg合金表面去除,金属Pt和Ag分别使Pt4f和Ag3d重态向较低结合能转移,支持Pt与Ag的合金化。PtAg/CB电极与Pt/CB电极不同的是,无论热处理与否,PtAg/CB电极都有两个甘油氧化波。第一个氧化波的起始电位为-0.60 V,比Pt/CB电极的起始电位低0.20 V,表明Pt与Ag的合金化大大提高了Pt的GOR活性。经过热处理的PtAg(3:1)/ CB电极提高了第二个氧化峰的GOR电流密度。PtAg/CB电极在-0.1和0 V的恒电位电解中,60min氧化电流密度与5min氧化电流密度之比(j60/j5)(催化剂劣化指标)在0 V时高于-0.1 V,这是因为在较大的过电位下吸附的氧化中间体被大量消耗。PtAg(3:1)/CB电极在-0.1 V时的j60/j5值升高,在0 V时的j60/j5值降低。这可能是由于形成了高阶氧化中间体,可能具有更强的中毒作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PtAg Nanoparticle Electrocatalysts for the Glycerol Oxidation Reaction in Alkaline Medium
To improve the activity for glycerol oxidation reaction (GOR) of Pt, PtAg (mole ratio of Pt/Ag = 3 and 1) alloy nanoparticle-loaded carbon black (Pt/CB, PtAg(3:1)/CB, PtAg(1:1)/CB) catalysts were prepared by a wet method. The resultant catalysts, moreover, were heat-treated in a N2 atmosphere at 200°C. The alloying of Pt with Ag for each PtAg/CB was confirmed by X-ray diffractometry and electron dispersive X-ray spectrometry. The heat-treatment did not change the crystal structure of the PtAg alloys and increased their particle size. X-ray photoelectron spectroscopy exhibited that stabilizers were completely removed from the PtAg alloy surface, and the Pt4f and Ag3d doublets due to metallic Pt and Ag, respectively, shifted to lower binding energies, supporting the alloying of Pt with Ag. Both PtAg/CB electrodes had two oxidation waves of glycerol irrespective of heat-treatment, which was different from the Pt/CB electrode. The onset potential of the first oxidation wave was -0.60 V, which was 0.20 V less positive than that for the Pt/CB electrode, indicating the alloying of Pt with Ag greatly improved the GOR activity of Pt. The heat-treated PtAg(3:1)/ CB electrode improved the GOR current density of the second oxidation peak. In the potentiostatic electrolysis at -0.1 and 0 V for both PtAg/CB electrodes, the ratio of oxidation current density at 60 min to that at 5 min (j60/j5), an indicator of the catalyst deterioration, at 0 V was higher than that at -0.1 V, because the adsorbed oxidation intermediates were greatly consumed at the larger overpotential. The heat-treatment of the PtAg(3:1)/CB electrode increased the j60/j5 value at -0.1 V but decreased that at 0 V. This could be attributed to the formation of high-order oxidation intermediates which might have stronger poisoning effect.
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