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首页> 外文期刊>Angewandte Chemie >Adsorbed Intermediates in Oxygen Reduction on Platinum Nanoparticles Observed by In Situ IR Spectroscopy
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Adsorbed Intermediates in Oxygen Reduction on Platinum Nanoparticles Observed by In Situ IR Spectroscopy

机译:用原位IR光谱观察到铂纳米粒子氧还原中的吸附中间体

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摘要

The sluggish kinetics of oxygen reduction to water remains a significant limitation in the viability of proton-exchange-membrane fuel cells, yet details of the four-electron oxygen reduction reaction remain elusive. Herein, we apply in situ infrared spectroscopy to probe the surface chemistry of a commercial carbon-supported Pt nanoparticle catalyst during oxygen reduction. The IR spectra show potential-dependent appearance of adsorbed superoxide and hydroperoxide intermediates on Pt. This strongly supports an associative pathway for oxygen reduction. Analysis of the adsorbates alongside the catalytic current suggests that another pathway must also be in operation, consistent with a parallel dissociative pathway.
机译:氧气减少的缓慢动力学仍然是质子 - 交换膜燃料电池的活力的显着限制,但四电子氧还原反应的细节仍然难以捉摸。 在此,我们施用原位红外光谱,探测在氧还原过程中商业碳负载的Pt纳米颗粒催化剂的表面化学。 IR光谱显示出吸附的超氧化物和氢过氧化物中间体的潜在依赖性外观。 这强烈支持用于氧还原的联想途径。 与催化电流旁边的吸附物分析表明另一种途径也必须在运行中,与平行分离途径一致。

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