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Se-modified Ru nanoparticles as ORR catalysts – Part 1: Synthesis and analysis by RRDE and in PEFCs

机译:硒改性Ru纳米颗粒作为ORR催化剂第1部分:RRDE和PEFC中的合成和分析

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摘要

We report a new method of preparation of a methanol-tolerant Se/Ru cathode catalyst for the direct methanol fuel cell (DMFC) [1,2], whereby selenium is deposited on ruthenium nanoparticles by H_2-reduction of SeO_2 in aqueous solution at room temperature. The obtained Se/Ru(aq) was studied by electrochemical measurements and tested as a cathode catalyst in H_2–air and direct methanol fuel cells. The new catalyst formulation (Se/Ru(aq)) is shown to be superior to Se/Ru synthesized from xylenes solvent [3] and to Ru black by RRDE measurements, in terms of both activity and selectivity for complete oxygen reduction to water. Although Ru black is less active, the Tafel slopes and activation energies of Se/Ru catalysts and reduced-Ru black are similar, implying similar ORR mechanisms. In H_2–air fuel cell tests, Se/ Ru(aq) was more active than Se/Ru(xyl) at all voltages. Compared to Ru black, Se/Ru(aq) was superior at low current densities, but Ru black slightly exceeded the performance of Se/Ru at high current densities. To explain the RRDE and fuel cell observations, the two roles of Se as an inhibitor of Ru oxidation and as a site-blocker are discussed.
机译:我们报道了一种直接甲醇燃料电池(DMFC)[1,2]的耐甲醇的Se / Ru阴极催化剂的制备新方法,其中硒通过在室温下水溶液中的H_2还原SeO_2来沉积在钌纳米颗粒上温度。通过电化学测量研究了获得的Se / Ru(aq),并作为H_2-空气和直接甲醇燃料电池中的阴极催化剂进行了测试。新的催化剂配方(Se / Ru(aq))显示出从二甲苯溶剂[3]合成的Se / Ru和通过RRDE测量的Ru黑,在将氧气完全还原为水的活性和选择性方面都优于。尽管Ru黑色的活性较低,但Se / Ru催化剂和还原Ru黑色的Tafel斜率和活化能相似,这表明ORR机理相似。在H_2-空气燃料电池测试中,在所有电压下,Se / Ru(aq)比Se / Ru(xyl)更具活性。与Ru black相比,Se / Ru(aq)在低电流密度下表现优异,但Ru black在高电流密度下略胜Se / Ru的性能。为了解释RRDE和燃料电池的观察结果,讨论了Se作为Ru氧化抑制剂和位阻剂的两种作用。

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