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Effect of hydrophobic cations on the oxygen reduction reaction on single‒crystal platinum electrodes

机译:疏水阳离子对单晶铂电极上氧还原反应的影响

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摘要

Highly active catalysts for the oxygen reduction reaction are essential for the widespread and economically viable use of polymer electrolyte fuel cells. Here we report the oxygen reduction reaction activities of single‒crystal platinum electrodes in acidic solutions containing tetraalkylammonium cations with different alkyl chain lengths. The high hydrophobicity of a tetraalkylammonium cation with a longer alkyl chain enhances the oxygen reduction reaction activity. The activity on Pt(111) in the presence of tetra‒n‒hexylammonium cation is eight times as high as that without this cation, which is comparable to the activities on Pt3Co(111) and Pt3Ni(111) electrodes. Hydrophobic cations and their hydration shells destabilize the adsorbed hydroxide and adsorbed water. The hydrophobic characteristics of non‒specifically adsorbed cations can prevent the adsorption of poisoning species on the platinum electrode and form a highly efficient interface for the oxygen reduction reaction.
机译:用于氧还原反应的高活性催化剂对于聚合物电解质燃料电池的广泛且经济可行的使用是必不可少的。在这里,我们报告了单晶铂电极在含不同烷基链长的四烷基铵阳离子的酸性溶液中的氧还原反应活性。具有更长烷基链的四烷基铵阳离子的高疏水性增强了氧还原反应的活性。在存在四‒六己基铵阳离子的情况下,对Pt(111)的活性是不存在该阳离子时对Pt(111)的活性的八倍,这与对Pt3Co(111)和Pt3Ni(111)电极的活性相当。疏水性阳离子及其水合壳使吸附的氢氧化物和吸附的水不稳定。非特异吸附阳离子的疏水特性可以防止中毒物质在铂电极上的吸附,并为氧还原反应形成高效的界面。

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