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Reaction Analysis of Ethanol Electro-Oxidation on PdRu/C Catalyst at Intermediate Temperature

机译:中间温度下PdRu / C催化剂上乙醇电氧化反应的分析

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摘要

To evaluate the availability of non-Pt catalysts in a direct ethanol fuel cell operating at an intermediate temperature, a PdRu/C catalyst was synthesized by a liquid phase reduction method and its catalytic activity for ethanol electro-oxidation was investigated at approximately 250°C using a single cell fabricated with CsH2PO4 proton-conducting solid electrolyte. Electrochemical measurement and reaction product analysis revealed that direct electro-oxidation of ethanol and hydrogen production from ethanol proceeded in parallel on PdRu/C. The PdRu/C catalyst showed high activity for hydrogen production reaction comparable to that on the PtRu/C catalyst, which results in high current density at low electrode potentials (<200 mV). C-C bond dissociation proceeded rapidly on the PdRu/C catalyst, while the subsequent oxidation of the adsorbed C, species may be the rate-determining step at the intermediate temperature. For further activation of the PdRu/C catalyst, activation of surface OH should be investigated.
机译:为了评估在中温下运行的直接乙醇燃料电池中非Pt催化剂的可用性,通过液相还原法合成了PdRu / C催化剂,并在约250°C下研究了其对乙醇电氧化的催化活性。使用由CsH2PO4质子传导固体电解质制成的单电池。电化学测量和反应产物分析表明,在PdRu / C上并行进行乙醇的直接电氧化和乙醇制氢。与在PtRu / C催化剂上相比,PdRu / C催化剂对制氢反应显示出高活性,从而在低电极电势(<200 mV)下产生高电流密度。在PdRu / C催化剂上C-C键解离迅速进行,而随后吸附的C1物种的氧化可能是在中间温度下的速率决定步骤。为了进一步活化PdRu / C催化剂,应研究表面OH的活化。

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