铂金
催化作用
碳纤维
氢
无机化学
硝酸盐
材料科学
液相
相(物质)
化学工程
化学
有机化学
复合材料
复合数
工程类
物理
热力学
作者
Yongmi Wang,Shihao Fan,Bing Fan,Weifeng Liu,Lin Chen,Duchao Zhang
标识
DOI:10.1021/acsaem.4c03075
摘要
High Pt-load catalysts can be used to prepare thin catalytic layers and high-energy-density proton-exchange-membrane fuel cell cathodes for practical applications. However, because high Pt loads agglomerate Pt nanoparticles on carrier surfaces, the batch preparation of high Pt-load catalysts possessing both high activity and high Pt nanoparticle dispersibility is important for practical applications. In this study, high Pt-load Pt/C catalysts were prepared using a platinum nitrate precursor and the high specific surface area Ketjenblack EC600JD carbon carrier via impregnation and liquid-phase hydrogenation reduction. In the catalyst, the average Pt nanoparticle size was 2.30 nm. The electrochemically active surface area of the Pt/CEC600JD catalyst was 63.91 m2 gPt–1, and its mass activity (MA) was 0.35 A mgPt–1 at 0.9 V (versus a reversible hydrogen electrode), which is 1.4 times that of commercial 50% Pt/CTKK, as measured using a rotating disk electrode. After 20 000 accelerated durability test cycles, the MA of the Pt/CEC600JD catalyst was 1.7 times that of 50% Pt/CTKK under the same experimental conditions. The catalyst synthesized using platinum nitrate and EC600JD showed excellent activity and can be used for practical electrocatalytic applications.
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