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Synthesis and characterization of Pt supported on multiwalled carbon nanotubes for improved catalytic performance in fuel cell applications

机译:负载在多壁碳纳米管上的Pt的合成和表征,以改善燃料电池应用中的催化性能

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摘要

Commercially available multiwalled carbon nanotubes (MWCNTs) were functionalized using a mixture of HNO3 and H2SO4 in refluxing condition under three different reaction times (1, 3, and 5 h). The Pt loaded on functionalized MWCNTs (f-MWCNTs) (Pt/1f, 3f & 5f-MWCNTs) were prepared by reducing chloroplatinic acid and for comparison Pt loaded on pristine MWCNTs (Pt/MWCNTs) was also prepared. The size of Pt nanoparticles was determined using X-ray diffraction method. The uniform dispersion of the Pt catalyst on CNTs was confirmed by HRSEM and HRTEM. Surface area and pore size were calculated by Brunauer Emmett Teller analysis method. Five membrane electrode assembly sets were prepared (Pt/MWCNTs, Pt/1f, 3f, 5f-MWCNTs and commercial Pt/C) and tested in the fuel cell assembly. The first four were prepared using SPEEK membrane as electrolyte with the synthesized Pt/f-MWCNTs catalysts and the fifth one was prepared using commercial Nafion-117 electrolyte and Pt/C electrode for comparison.
机译:使用HNO3和H2SO4的混合物在三个不同的反应时间(1、3和5小时)的回流条件下,使用HNO3和H2SO4的混合物对市售的多壁碳纳米管(MWCNT)进行功能化。通过还原氯铂酸制备负载在功能化MWCNT(f-MWCNT)(Pt / 1f,3f和5f-MWCNT)上的Pt,并且为了比较,还制备了负载在原始MWCNT(Pt / MWCNTs)上的Pt。使用X射线衍射法确定Pt纳米粒子的尺寸。通过HRSEM和HRTEM证实了Pt催化剂在CNT上的均匀分散。表面积和孔径通过Brunauer Emmett Teller分析方法计算。制备了五个膜电极组件组(Pt / MWCNT,Pt / 1f,3f,5f-MWCNT和商用Pt / C),并在燃料电池组件中进行了测试。前四种是使用SPEEK膜作为电解质与合成的Pt / f-MWCNTs催化剂制备的,而第五种是使用商用的Nafion-117电解质和Pt / C电极制备的,以进行比较。

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