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首页> 外文期刊>ACS applied materials & interfaces >Nitrogen-Doped Hierarchical Lamellar Porous Carbon Synthesized from the Fish Scale As Support Material for Platinum Nanoparticle Electrocatalyst toward the Oxygen Reduction Reaction
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Nitrogen-Doped Hierarchical Lamellar Porous Carbon Synthesized from the Fish Scale As Support Material for Platinum Nanoparticle Electrocatalyst toward the Oxygen Reduction Reaction

机译:由鱼鳞合成的氮掺杂层状多孔碳作为铂纳米粒子电催化剂的减氧反应载体材料

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摘要

Novel hierarchical lamellar porous carbon (HLPC) with high BET specific surface area of 2730 m g~(-1) and doped by nitrogen atoms has been synthesized from the fish scale without any post-synthesis treatment, and applied to support the platinum (Pt) nanoparticle (NP) catalysts (Pt/ HLPC). The Pt NPs could be highly dispersed on the porous surface of HLPC with a narrow size distribution centered at ca. 2.0 nm. The results of the electrochemical analysis reveal that the electrochemical active surface area (ECSA) of Pt/HLPC is larger than the Pt NP electrocatalyst supported on the carbon black (Pt/Vulcan XC-72). Compared with the Pt/Vulcan XC- 72, the Pt/HLPC exhibits larger current density, lower overpotential, and enhanced catalytic activity toward the oxygen reduction reaction (ORR) through the direct four-electron pathway. The improved catalytic activity is mainly attributed to the high BET specific surface area, hierarchical porous structures and the nitrogen-doped surface property of HLPC, indicating the superiority of HLPC as a promising support material for the ORR electrocatalysts.
机译:由鱼鳞未经合成后处理,合成了BET比表面积高2730 mg〜(-1),氮原子掺杂的新型层状多孔碳(HLPC),并用于负载铂(Pt)纳米颗粒(NP)催化剂(Pt / HLPC)。 Pt NPs可以高度分散在HLPC的多孔表面上,其中心分布在一个狭窄的中心。 2.0纳米电化学分析的结果表明,Pt / HLPC的电化学活性表面积(ECSA)大于负载在炭黑上的Pt NP电催化剂(Pt / Vulcan XC-72)。与Pt / Vulcan XC-72相比,Pt / HLPC通过直接四电子途径表现出更大的电流密度,更低的超电势和增强的对氧还原反应(ORR)的催化活性。改进的催化活性主要归因于HLPC的高BET比表面积,分层的多孔结构和氮掺杂的表面性能,这表明HLPC作为ORR电催化剂的有前途的载体材料的优越性。

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