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Effect of Sb Segregation on Conductance and Catalytic Activity at Pt/Sb-Doped SnO2 Interface: A Synergetic Computational and Experimental Study

机译:锑对Pt / Sb掺杂SnO2界面电导和催化活性的影响:协同计算和实验研究

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摘要

Antimony-doped tin dioxide (ATO) is considered a promising support material for Pt-based fuel cell cathodes, displaying enhanced stability over carbon-based supports. In this work, the effect of Sb segregation on the conductance and catalytic activity at Pt/ATO interface was investigated through a combined computational and experimental study. It was found that Sb-dopant atoms prefer to segregate toward the ATO/Pt interface. The deposited Pt catalysts, interestingly, not only promote Sb segregation, but also suppress the occurrence of Sb3+ species, a charge carrier neutralizer at the interface. The conductivity of ATO was found to increase, to a magnitude close to that of activated, carbon, with an increment of Sb concentration before reaching a saturation point around 10%, and then decrease, indicating that Sb enrichment at the ATO surface may not always favor an increment of the electric current, In addition, the calculation results show that the presence of Sb dopants in ATO has little effect on the catalytic activity of deposited three-layer Pt toward the oxygen reduction reaction, although subsequent alloying of Pt and Sb could lower the corresponding catalytic activity. These findings help to support future applications of ATO/Pt-based materials as possible cathodes for proton exchange membrane fuel cell applications with enhanced durability under practical applications.
机译:锑掺杂的二氧化锡(ATO)被认为是用于Pt基燃料电池阴极的有前途的载体材料,与基于碳的载体相比,具有增强的稳定性。在这项工作中,通过组合的计算和实验研究,研究了Sb偏析对Pt / ATO界面电导和催化活性的影响。已经发现,掺Sb的原子倾向于偏向ATO / Pt界面。有趣的是,沉积的Pt催化剂不仅促进Sb偏析,而且还抑制了界面处的电荷载体中和剂Sb3 +的出现。发现ATO的电导率会增加,达到接近活性炭的电导率,并随着Sb浓度的增加而达到饱和点附近的10%,然后降低,这表明ATO表面的Sb富集可能并不总是如此计算结果表明,ATO中Sb掺杂剂的存在对沉积的三层Pt对氧还原反应的催化活性影响很小,尽管随后的Pt和Sb合金化可以降低相应的催化活性。这些发现有助于支持基于ATO / Pt的材料的未来应用,作为质子交换膜燃料电池应用的可能阴极,在实际应用中具有增强的耐久性。

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