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Carbon-supported shape-controlled Pt nanoparticle electrocatalysts for direct alcohol fuel cells

机译:用于直接酒精燃料电池的碳载形状控制的Pt纳米粒子电催化剂

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摘要

The demand for power sources alternative to fossil fuels makes urgent the development of more efficient electrocatalysts for fuel cells applications and the maximization of the performances of the existent ones. This work reports, for the first time, the use of carbon-supported shape-controlled Pt nanoparticles as anode catalysts in direct ethanol fuel cells. By using cubic Pt nanoparticles, on which (100) surface sites are predominant, the performance of the fuel cell can be increased from 14 to 24 mW per mg of Pt when compared with cuboctahedral nanoparticles. Moreover, the open circuit potential shifts about 50 mV toward more positive potentials. In comparison with commercially available Pt catalysts, the performance for the (100) preferentially oriented nanoparticles is about three times higher. The reported results evidence that, from an applied point of view, the effect of the surface structure/shape of the electrocatalysts can be also considered to improve the performance of real fuel cell systems.
机译:对替代化石燃料的电源的需求使得迫切需要开发用于燃料电池应用的更有效的电催化剂以及使现有的电催化剂的性能最大化。这项工作首次报道了碳负载形状控制的Pt纳米颗粒在直接乙醇燃料电池中作为阳极催化剂的用途。与立方八面体纳米颗粒相比,通过使用立方铂Pt纳米颗粒(在100个表面上占主导地位),燃料电池的性能可以从每毫克Pt 14毫瓦增加到24毫瓦。而且,开路电势向更正的电势偏移约50 mV。与可商购的Pt催化剂相比,(100)优先取向的纳米颗粒的性能高约三倍。报道的结果证明,从应用的角度来看,还可以考虑电催化剂的表面结构/形状的影响来改善实际燃料电池系统的性能。

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