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Electrochemical characteristics and performance of CoTMPP/BP oxygen reduction electrocatalysts for PEM fuel cell

机译:CoTMPP / BP氧还原电催化剂在PEM燃料电池上的电化学特性和性能

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Microwave synthesis method was applied to prepare CoTMPP/BP oxygen reduction electrocatalysts. The influence of the pre-treatment of BP2000 carbon supports by 6 M HNO3 and 30 wt% H2O2 on the activity of electrocatalysts for oxygen reduction was investigated by means of the measurements of their electrochemical characteristics and performances. Levich-Koutecky plot shows that the number of transferred electrons during oxygen reduction on CoTMPP/BP is found to be between 2 and 4. The observed evidence indicated that the production of hydrogen peroxide has occurred during oxygen reduction in two electrons, and further oxidation of hydrogen peroxide involving two other electrons in the higher potential may also occur. The fuel cell performance of single cells with the different CoTMPP/BP electrocatalysts was examined under actual PEM fuel cell conditions. For hydrogen-oxygen fuel cell system, the maximal output power density reached 150 mW/cm(2) at 50 degrees C. Life test was carried out at a constant of the output current density of 200 mA/cm(2) for CoTMPP/BP electrocatalyst, the single cell output voltage maintains at about 0.5 V for more than 900 min, there was no obvious performance degradation under fuel cell conditions. (c) 2006 Elsevier B.V. All rights reserved.
机译:采用微波合成法制备了CoTMPP / BP氧还原电催化剂。通过测量其电化学特性和性能,研究了用6 M HNO3和30 wt%H2O2预处理BP2000碳载体对电催化剂还原氧活性的影响。 Levich-Koutecky图表明,在CoTMPP / BP上的氧还原过程中,转移电子的数量介于2和4之间。观察到的证据表明,过氧化氢的产生是在两个电子的氧还原过程中发生的,并且进一步氧化了也可能会出现涉及两个其他处于较高电势的电子的过氧化氢。在实际的PEM燃料电池条件下检查了使用不同CoTMPP / BP电催化剂的单电池的燃料电池性能。对于氢氧燃料电池系统,在50摄氏度时最大输出功率密度达到150 mW / cm(2)。对于CoTMPP /,在200 mA / cm(2)的恒定输出电流密度下进行寿命测试。 BP电催化剂,单节电池输出电压维持在约0.5 V超过900分钟,在燃料电池条件下性能没有明显下降。 (c)2006 Elsevier B.V.保留所有权利。

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