首页> 外文期刊>International journal of hydrogen energy >Characterization Of Composite Materials Of Electroconductive Polymer And Cobalt As Electrocatalysts For The Oxygen Reduction Reaction
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Characterization Of Composite Materials Of Electroconductive Polymer And Cobalt As Electrocatalysts For The Oxygen Reduction Reaction

机译:导电聚合物与钴复合材料作为氧还原反应的电催化剂的表征

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摘要

Platinum-free electrocatalysts based on electroconductive polymer, modified with cobalt, were prepared and characterized for the oxygen reduction reaction (ORR). The carbon-supported materials were: carbon/polyaniline/cobalt, carbon/polypyrrole/cobalt and carbon/poly(3-methylthiophene)/cobalt. Also the corresponding cobalt-free precursors were studied. EDAX studies show that in cobalt-modified catalysts, significant percentages of cobalt, between 5 and 7% in weight, are present. FTIR, TGA, and EDAX studies confirmed that the addition of cobalt modifies the chemical structure of C-Pani, C-Ppy, and C-P3MT materials. Cyclic voltammetry shows reduction peaks corresponding to the ORR for all materials and kinetic parameters were calculated based on lineal voltammetry using RDE at different rotating speeds. It was found that C-P3MT-Co has highest exchange current densities, followed by C-Ppy and C-Ppy-Co. All samples have Tafel slopes between -110 and -120 V/dec, indicating that the first electron transfer is the decisive step in the global ORR. Potentiostatic tests showed an adequate stability of cobalt-modified samples in acid medium at ORR potentials. Based on the potential range at which ORR occurs, the exchange current density and stability tests, it is concluded that the best material for potential application as fuel cell cathode catalyst is C-Ppy-Co.
机译:制备了基于导电聚合物,经钴改性的无铂电催化剂,并对其进行了氧还原反应(ORR)。碳负载的材料为:碳/聚苯胺/钴,碳/聚吡咯/钴和碳/聚(3-甲基噻吩)/钴。还研究了相应的无钴前体。 EDAX研究表明,在钴改性的催化剂中,存在很大百分比的钴,重量百分比介于5%至7%之间。 FTIR,TGA和EDAX研究证实,添加钴会改变C-Pani,C-Ppy和C-P3MT材料的化学结构。循环伏安法显示所有材料对应于ORR的还原峰,并且基于线性伏安法使用RDE在不同转速下计算动力学参数。发现C-P3MT-Co具有最高的交换电流密度,其次是C-Ppy和C-Ppy-Co。所有样品的Tafel斜率在-110至-120 V / dec之间,表明首次电子转移是整体ORR的决定性步骤。恒电位测试表明钴改性的样品在酸性介质中在ORR电位下具有足够的稳定性。根据发生ORR的电位范围,交换电流密度和稳定性测试,可以得出结论,最有可能作为燃料电池阴极催化剂应用的最佳材料是C-Ppy-Co。

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