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首页> 外文期刊>ACS Omega >High-Repetitive Reversal Tolerant Performance of Proton-Exchange Membrane Fuel Cell by Designing a Suitable Anode
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High-Repetitive Reversal Tolerant Performance of Proton-Exchange Membrane Fuel Cell by Designing a Suitable Anode

机译:通过设计合适的阳极,质子交换膜燃料电池的高重复逆转性能

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Hydrogen starvation of the proton-exchange membrane fuel cell can result in high positive anode potentials followed by cell voltage reversal, which causes water electrolysis and carbon corrosion. A common material-based method is to adopt water electrolysis catalysts to promote water electrolysis over carbon corrosion. While, the membrane electrode assembly shows poor-repetitive reversal performance as the fuel starvation tests are repeated in the previous studies. Herein, IrO_(2)/RuO_(2) nanocomposites are prepared by a modified Adams method and characterized by physical and electrochemical measurement. Then, the as-prepared IrO_(2)/RuO_(2) is used as an oxygen evolution reaction catalyst in reversal tolerant anodes, and the results exhibit an unexpected repetitive reversal tolerant performance with the voltage reversal times become longer as the increase of fuel starvation tests.
机译:质子交换膜燃料电池的氢饥饿可导致高阳性阳极电位,然后是电池电压反转,导致水电解和碳腐蚀。一种基于普遍的基于材料的方法是采用水电解催化剂来促进水电解通过碳腐蚀。虽然,当在先前的研究中重复燃料饥饿试验时,膜电极组件显示重复逆转性能。这里,通过改性的ADAMS方法制备IRO_(2)/ RUO_(2)纳米复合材料,其特征在于物理和电化学测量。然后,用作反转耐受性阳极中的氧化反应催化剂的制备的IRO_(2)/ RuO_(2),结果表现出意外的重复逆转耐受性能,随着燃料的增加,电压反转时间变得更长。饥饿试验。

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