首页> 外文会议> >PT AND PTCO ELECTROCATALYSTS PREPARED BY MECHANICAL ALLOYING AND METAL ORGANIC CHEMICAL VAPOUR DEPOSITION FOR THE OXYGEN REDUCTION REACTION IN ALKALINE MEDIA
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PT AND PTCO ELECTROCATALYSTS PREPARED BY MECHANICAL ALLOYING AND METAL ORGANIC CHEMICAL VAPOUR DEPOSITION FOR THE OXYGEN REDUCTION REACTION IN ALKALINE MEDIA

机译:机械合金化和金属有机化学气相沉积制备的PT和PTCO电解质在碱性介质中的氧还原反应。

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Pt and Pt-Co (70-30) Electrocatalysts were obtained by Mechanical alloying (MA) of Pt and cobalt powders. They also were prepared as thin films on glassy carbon by chemical vapour deposition CVD of metal organic precursors of Pt and Co. The MA electrocatalysts consisted of agglomerated particles constituted of 20-25 nm crystallites. The CVD films had about 250 nm of thickness and the particles size was about 30 nm for Pt particles and 19 nm for Pt-Co particles. Some iron was determined by EDX 0.9% in Pt and 3.1% in Pt-Co for the samples prepared by MA. Tafel plots were performed for the elecrocatalysts obtained by both techniques, and the kinetic parameters for the ORR were determined. The results showed that PtCo alloys obtained by both techniques have higher exchange current densities than Pt prepared in the same conditions. The difference is higher for the materials prepared by MA. The Koutecky-Levich plots were compared with 2 and 4 electron pathways for the ORR: The MA and CVD obtained electrocatalysts showed a 4 electron transfer for the ORR.
机译:Pt和Pt-Co(70-30)电催化剂是通过对Pt和钴粉进行机械合金化(MA)获得的。它们还通过Pt和Co的金属有机前体的化学气相沉积CVD在玻璃碳上制成薄膜。MA电催化剂由20-25 nm的微晶构成的团聚颗粒组成。 CVD膜的厚度为约250nm,Pt颗粒的粒径为约30nm,Pt-Co颗粒的粒径为19nm。对于MA制备的样品,EDX以Pt 0.9%和Pt-Co 3.1%的含量测定。对通过两种技术获得的电子催化剂进行了Tafel图,并确定了ORR的动力学参数。结果表明,与在相同条件下制备的Pt相比,通过两种技术获得的PtCo合金具有更高的交换电流密度。对于MA制备的材料,差异更大。将Koutecky-Levich图与ORR的2条和4条电子路径进行了比较:MA和CVD获得的电催化剂显示ORR的4条电子转移。

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