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首页> 外文期刊>Electrochimica Acta >Hydrothermal synthesis of Fe2O3/polypyrrole/graphene oxide composites as highly efficient electrocatalysts for oxygen reduction reaction in alkaline electrolyte
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Hydrothermal synthesis of Fe2O3/polypyrrole/graphene oxide composites as highly efficient electrocatalysts for oxygen reduction reaction in alkaline electrolyte

机译:水热法合成Fe2O3 /聚吡咯/氧化石墨烯复合物作为碱性电解质中氧还原反应的高效电催化剂

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摘要

Advantages in low cost, and excellent catalytic activity of Fe-based nanomaterials dispersed on nitrogendoped graphene supports render them to be good electrocatalysts for the oxygen reduction reaction (ORR) in fuel cells. Here, Fe2O3/polypyrrole/graphene oxide (Fe2O3/Ppy/GO) composites with the Fe2O3 embedded in the Ppy modified GO are synthesized using hydrothermal method. With an optimal iron atom content ratio of 1.6% in graphene oxide and heat treatment at 800 degrees C, the Fe2O3/Ppy/GO exhibited enhanced catalytic performance for ORR with the onset potential of -0.1 V (vs SCE), cathodic potential of -0.24 V (vs SCE), an approximate 4e transfer process in O-2-saturated 0.1 M KOH, and superior stability that only reduced 5% catalytic activity after 5000 cycles. The decisive factors in improving the electrocatalytic and durable performance are the intimate and large contact interfaces between nanocrystallines of Fe2O3 and Ppy/GO, in addition to the high electron withdrawing/storing ability and the high conductivity of GO doped with nitrogen from Ppy during the hydrothermal reaction. The Fe2O3/Ppy/GO showed significantly improved ORR properties and confirmed that Fe-N-C-based electrocatalysts played a key role in fuel cells. (C) 2015 Elsevier Ltd. All rights reserved.
机译:低成本优势以及分散在氮掺杂石墨烯载体上的铁基纳米材料的出色催化活性使它们成为燃料电池中氧还原反应(ORR)的良好电催化剂。在此,使用水热法合成了嵌入Ppy改性GO中的Fe2O3 / Fe2O3 /聚吡咯/氧化石墨烯(Fe2O3 / Ppy / GO)复合材料。 Fe2O3 / Ppy / GO在氧化石墨烯中的最佳铁原子含量比率为1.6%,并且在800摄氏度的温度下进行热处理,其对ORR的催化性能增强,起始电势为-0.1 V(vs SCE),阴极电势为- 0.24 V(vs SCE),在O-2-饱和的0.1 M KOH中的大约4e转移过程以及出色的稳定性,在5000次循环后仅降低了5%的催化活性。改善电催化性能和持久性能的决定性因素是Fe2O3和Ppy / GO纳米晶体之间紧密且大的接触界面,以及在水热过程中高吸电子/储藏能力和从Ppy中掺入氮的GO的高电导率。反应。 Fe2O3 / Ppy / GO显示出显着改善的ORR性能,并证实基于Fe-N-C的电催化剂在燃料电池中起关键作用。 (C)2015 Elsevier Ltd.保留所有权利。

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