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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Zr-doped ceria additives for enhanced PEM fuel cell durability and radical scavenger stability
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Zr-doped ceria additives for enhanced PEM fuel cell durability and radical scavenger stability

机译:Zr掺杂的Ceria添加剂,用于增强PEM燃料电池耐用性和自由基清除稳定性

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Doped ceria compounds demonstrate excellent radical scavenging abilities and are promising additives to improve the chemical durability of polymer electrolyte membrane (PEM) fuel cells. In this work, Ce0.85Zr0.15O2 (CZO) nanoparticles were incorporated into the cathode catalyst layers (CLs) of PEM fuel cells (based on Nafion XL membranes containing 6.0 mu g cm(-2) ion-exchanged Ce) at loadings of 10 and 55 mu g cm(-2). When compared to a CZO-free baseline, CZO-containing membrane electrode assemblies (MEAs) demonstrated extended lifetimes during PEM chemical stability accelerated stress tests (ASTs), exhibiting reduced electrochemical gas crossover, open circuit voltage decay, and fluoride emission rates. The MEA with high CZO loading (55 mu g cm(-2)) demonstrated performance losses, which are attributed to Ce poisoning of the PEM and CL ionomer regions, which is supported by X-ray fluorescence (XRF) analysis. In the MEA with the low CZO loading (10 mu g cm(-2)), both the beginning of life (BOL) performance and the performance after 500 hours of ASTs were nearly identical to the BOL performance of the CZO-free baseline MEA. XRF analysis of the MEA with low CZO loading reveals that the BOL PEM Ce concentrations are preserved after 1408 hours of ASTs and that Ce contents in the cathode CL are not significant enough to reduce performance. Therefore, employing a highly effective radical scavenger such as CZO, at a loading of 10 mu g cm(-2) in the cathode CL, dramatically mitigates degradation effects, which improves MEA chemical durability and minimizes performance losses.
机译:掺杂的二氧化铈化合物表现出优异的自由基清除能力,并且是有助于提高聚合物电解质膜(PEM)燃料电池的化学耐久性的添加剂。在这项工作中,CE0.85ZR0.15O2(CZO)纳米颗粒掺入PEM燃料电池的阴极催化剂层(CLS)中(基于含有6.0μgcm(-2)离子交换的Ce)的乳蛋白燃料电池的阴极催化剂层(Cls) 10和55 mu g cm(-2)。与无CZO基线相比,含CZO的膜电极组件(MEA)在PEM化学稳定性加速应力测试(ASTS)期间延伸了寿命,表现出降低的电化学气体交叉,开路电压衰减和氟化物排放率。具有高CZO负载的MEA(55μgcm(-2))显示性能损失,其归因于PEM和Cl离聚物区的CE中毒,其由X射线荧光(XRF)分析负载。在具有低CZO负载的MEA(10μgcm(-2))中,寿命开始(BOL)性能和500小时AST后的性能几乎与无CZO的基线MEA的BOL性能几乎相同。具有低CZO载荷的MEA的XRF分析表明,在AST的1408小时后保留了BOL PEM CE浓度,并且阴极CL中的CE内容物不足以降低性能。因此,在阴极CL中的10μgcm(-2)的负载下,采用高效的自由基清除剂如CZO,显着降低了降解效果,这提高了MEA化学耐久性并最大限度地减少了性能损失。

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