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Characterization of Pt-based transition metal alloy electrodes for PEFC

机译:PEFC基于PT基过渡金属合金电极的表征

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Pt metal is generally used as electrocatalyst in polymer electrolyte fuel cells (PEFC). However, the catalytic action of Pt anode is obstructed by the adsorption of CO gas molecules on to their surface and consequently the efficiency of the fuel cell decreases. Moreover, the activity of PEFC deteriorates even if the presence of CO is as low as 100 ppm [1]. In this paper, attempts are being made to replace the Pt with Pt-based transition metal alloys such as PtFe and PtCo to overcome the above problem and also to improve the activity of fuel cells. The PtFe/C and PtCo/C necessary for the preparation of the electrodes were synthesized by depositing PtFe and PtCo particles synthesized using the polyol process on to the surface ketjenblack [2]. From the results of cyclic voltammetry, we could confirm that PtFe/C could be used as an alternate material of Pt/C. However, Fe ions get eluted in the electrolyte. Thus, the study that can control the elution of Fe ion is necessary. Also in case of PtCo/C, we could confirm that Co ion doesn't get to elute, however the hydrogen oxidation reaction current is quite low.
机译:Pt金属通常用作聚合物电解质燃料电池(PEFC)的电催化剂。然而,Pt阳极的催化作用是通过对其表面的吸附而阻塞的Pt阳极,因此燃料电池的效率降低。此外,即使CO的存在低至100ppm [1],PEFC的活性也会劣化。在本文中,正在尝试用PT基过渡金属合金替换PTFE和PTCO的PT,以克服上述问题,并且还改善燃料电池的活性。通过沉积使用多元醇工艺合成的PTFE和PTCO颗粒对表面ketjenblack合成的PTFE / C和PTCO / C合成,合成了PTFE / C和PTCO / C.从循环伏安法的结果,我们可以确认PTFE / C可以用作PT / C的替代材料。然而,Fe离子在电解质中洗脱。因此,可以控制可以控制Fe离子洗脱的研究是必要的。此外,在PTCO / C的情况下,我们可以确认CO离子不会洗脱,但氢氧化反应电流相当低。

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