首页> 外文期刊>Electrochimica Acta >Electroreduction of nitrous oxide on platinum and palladium: Toward selective catalysts for methanol-nitrous oxide mixed-reactant fuel cells
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Electroreduction of nitrous oxide on platinum and palladium: Toward selective catalysts for methanol-nitrous oxide mixed-reactant fuel cells

机译:一氧化二氮在铂和钯上的电还原:甲醇-一氧化二氮混合反应燃料电池的选择性催化剂

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摘要

The kinetics of N_2O electroreduction in the absence and presence of methanol was studied between 295 and 333 K on polycrystalline Pt and Pd electrodes in 0.1 M NaOH. In the absence of methanol the reduction of N_2O on Pd is more facile than on Pt as shown by the approximately four times lower apparent activation energy and lower Tafel slope (Pt: 0.111 ± 0.019 V dec~(-1), Pd: 0.084 ± 0.007 V dec~(-1) at 295 K). Two different electroreduction mechanisms are proposed for Pt and Pd with and without participation of underpotential deposited hydrogen, respectively. The selectivity of Pt and Pd electrodes toward both N_2O electroreduction and methanol (0.5 and 1 M) oxidation at 295 K was also investigated. Pt based electrocatalysts are promising candidates for the anode of a mixed reactant CH_3OH-N_2O fuel cell due to inhibition of N_2O reduction by chemisorbed methanol. Pd on the other hand is a selective cathode electrocatalyst since N_2O reduction takes place fairly actively in the presence of 1 M methanol, while methanol oxidation is inhibited.
机译:在多晶Pt和Pd电极上的0.1 M NaOH中,在295 K和333 K之间研究了在不存在和存在甲醇的情况下,N_2O电还原的动力学。在没有甲醇的情况下,Pd上的N_2O还原比Pt上的还原更容易,这是表观活化能和Tafel斜率低约四倍(Pt:0.111±0.019 V dec〜(-1),Pd:0.084± 295 K时为0.007 V dec〜(-1)。对于Pt和Pd,提出了两种不同的电还原机理,分别具有和不具有欠电势沉积氢。还研究了Pt和Pd电极对295 K下N_2O电还原和甲醇(0.5和1 M)氧化的选择性。基于Pt的电催化剂由于可化学吸附的甲醇而抑制N_2O还原,因此有望成为混合反应物CH_3OH-N_2O燃料电池阳极的候选材料。另一方面,Pd是选择性阴极电催化剂,因为在1 M甲醇存在下N_2O还原非常活跃,而甲醇氧化受到抑制。

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