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Leaching- and sintering-resistant hollow or structurally ordered intermetallic PtFe alloy catalysts for oxygen reduction reactions

机译:浸出- - - sintering-resistant中空或结构有序金属间化合物聚四氟乙烯合金催化剂对氧还原反应

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摘要

Carbon supported Pt-based alloy materials that have been developed for proton exchange membrane fuel cells (PEMFCs) are vulnerable to deactivation due to the loss of non-noble metal components (leaching) or detachment, migration and aggregation of active nanoparticles (sintering). Until now some methods have been developed to inhibit leaching or sintering individually. However, a route able to avoid leaching and sintering simultaneously is still lacking. Herein, we develop a thermally driven interfacial diffusion alloying route that allows for the direct evolution of solid Pt nanoparticles (NPs) supported on carbon (Pt/C) into a Pt-skin-like hollow PtFe alloy or a structurally ordered intermetallic PtFe alloy, together with in situ encapsulation of PtFe alloy NPs with a thin layer porous nitrogen-doped carbon (NC) shell. The robust NC shells not only effectively prevent Pt-based NPs from detachment, migration, and aggregation during accelerated durability tests but also allow smoother access of electrolyte to the Pt surface, thus allowing the catalysts to well preserve their high catalytic activity. The well-defined shape and atomic arrangement of PtFe alloy NPs exhibit over 600% increase in mass activity and specific activity when compared with that of the pristine Pt/C catalyst. Stability tests confirm that the ordered PtFe alloy is more electrochemically stable than the disordered hollow PtFe alloy and Pt/C catalysts due to its ordered atomic arrangement and the robust NC shell.
机译:碳支持Pt-based合金材料对质子交换膜有了吗燃料电池质子交换膜燃料电池很容易由于非贵金属的失活组件(浸)或超然,迁移和聚合纳米粒子的活跃(烧结)。发达抑制浸出或烧结单独。浸出和烧结同时仍然是缺乏。界面扩散合金化路由,允许固体直接进化的Pt碳纳米颗粒(NPs)支持(Pt / C)成Pt-skin-like空心聚四氟乙烯合金或结构有序金属间化合物聚四氟乙烯合金,结合原位封装聚四氟乙烯合金用薄层多孔nitrogen-doped NPs碳(NC)外壳。有效地防止Pt-based NPs超然,迁移,在加速和聚合耐久性试验还允许访问更平稳Pt的电解液表面,从而允许保护他们高的催化剂催化活性。原子排列的聚四氟乙烯合金NPs展览结束在质量活动和特定的增长600%活动与原始相比Pt / C催化剂。命令聚四氟乙烯合金电化学原理比无序中空的聚四氟乙烯合金和稳定Pt / C催化剂由于其有序的原子安排和健壮的数控壳。

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