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首页> 外文期刊>ACS catalysis >Reaction Mechanism for Oxygen Reduction on Platinum: Existence of a Fast Initial Chemical Step and a Soluble Species Different from H2O2
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Reaction Mechanism for Oxygen Reduction on Platinum: Existence of a Fast Initial Chemical Step and a Soluble Species Different from H2O2

机译:铂氧还原的反应机理:快速初始化学步骤的存在和不同于H2O2的可溶性物种

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The oxygen reduction reaction (ORR) on platinum in perchloric acid is studied under transient conditions at stationary and nonstationary electrodes. Only under these conditions, the presence of a fast initial chemical step in the mechanism, giving rise to a soluble, short-lived intermediate proposed to be the HO2* radical, is revealed by comparing experimental and calculated curves by numerical simulations of simple reaction schemes. The formation of this species and the existence of a zero-current cycle involving it would be the main reasons for the lack of reduction currents at potentials higher than the ORB. reaction onset. Additionally, regardless of the exact subsequent steps after the initial chemical reaction, if HO2* is generated it would disproportionate to hydrogen peroxide, which implies that both species would be always produced during the ORR on Pt. The presence of HO2* and H2O2 would profoundly affect the durability of Pt-based catalysts and should be taken into account in the design of materials for fuel cell cathodes.
机译:在固定式和非间隔电极的瞬态条件下研究了高氯酸中铂的氧还原反应(ORR)。仅在这些条件下,通过比较简单反应方案的数值模拟,揭示了在机构中存在快速初始化学步骤的机理中的快速初始化学步骤,从而通过数值模拟通过简单反应方案的数值模拟来揭示所提出的可溶性的短寿命的中间体。 。这种物种的形成和涉及零电流周期的存在将是缺乏高于ORB的潜在潜力的主要原因。反应发作。另外,无论初始化学反应后的精确后续步骤如何,如果产生HO2 *,它将不成比例地与过氧化氢,这意味着两种物种在PT的ORR上总是产生。 HO2 *和H2O2的存在将深受PT基催化剂的耐久性,并且应该考虑在燃料电池阴极材料的设计中。

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