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首页> 外文期刊>Nanoscale >Binary nonmetal S and P-co-doping into mesoporous PtPd nanocages boosts oxygen reduction electrocatalysis
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Binary nonmetal S and P-co-doping into mesoporous PtPd nanocages boosts oxygen reduction electrocatalysis

机译:二进制非金属年代和P-co-doping到介孔PtPd nanocages促进氧气减少电催化作用

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摘要

The development of doped noble metal catalysts with nonmetal elements to improve the catalytic performance toward the oxygen reduction reaction (ORR) is significant for proton exchange membrane fuel cell technology. Here, we report a one-pot for dual-nonmetal-doping strategy for the synthesis of S and P-co-doped mesoporous PtPd nanocages (PtPdSP mNCs) by using pre-synthesized mesoporous PtPd nanocages (PtPd mNCs) as the precursor and triphenylphosphine sulphide as both S and P sources. Benefitting from the combined advantages of metal-nonmetal incorporation, hollow cavity and surface porosity, the resultant quaternary PtPdSP mNCs exhibit outstanding ORR activity and long-term stability. This research work provides a good strategy for the doping of two or more selected nonmetallic elements into metallic nanocrystals with a controllable structure and composition.
机译:掺杂贵金属催化剂的发展与非金属元素改善催化性能对氧还原反应对质子交换膜(ORR)是重要的燃料电池技术。dual-nonmetal-doping战略合成的年代和P-co-doped介孔PtPd通过使用pre-synthesized nanocages (PtPdSP跨国公司)介孔PtPd nanocages (PtPd跨国公司)前体和三苯基膦硫化物S和P来源。金属非金属的优势整合,空腔和表面孔隙度、合成第四纪PtPdSP跨国公司表现出杰出的奥尔活动和长期稳定。掺杂的工作提供了一个很好的策略两个或两个以上的选择非金属元素金属纳米晶体的可控结构和成分。

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