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首页> 外文期刊>Nanoscale >Boosting the performance and durability of Ni/YSZ cathode for hydrogen production at high current densities via decoration with nano-sized electrocatalysts
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Boosting the performance and durability of Ni/YSZ cathode for hydrogen production at high current densities via decoration with nano-sized electrocatalysts

机译:通过用纳米大小的电催化剂装饰,提高Ni/YSZ阴极在高电流密度下生产氢的性能和耐用性

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摘要

Conventional Ni/yttria-stabilized zirconia (YSZ) electrodes in solid oxide cells experience fast degradation when operated for the electrolysis of steam at high current densities. This study presents a relatively simple procedure of infiltrating Ce0.8Gd0.2O2- (CGO) nanoparticles into the Ni/YSZ electrode to achieve a stable cell performance. The long-term durability tests of the cells with a bare Ni/YSZ electrode and a CGO-infiltrated Ni/YSZ electrode were performed at 800 degrees C and -1.25 A cm(-2). The cell stability was investigated by measuring the cell voltage and obtaining the electro-chemical impedance spectra. The post-mortem analysis of the tested cells was conducted via scanning and transmission electron microscopy. The CGO nanoparticle infiltration reduced the cell voltage degradation rate from 699 mV kh(-1) for the bare Ni/YSZ electrode to 66 mV kh(-1) for the infiltrated electrode. The investigation showed that after introducing CGO nanoparticles, the steam reduction mechanism changed, and the electrode degradation originated from different mechanisms than that for the bare Ni/YSZ electrode.
机译:当固体氧化物细胞中的常规Ni/Yttria稳定的锆(YSZ)电极在高电流密度下进行蒸汽的电解时,会经历快速降解。这项研究将浸润CE0.8GD0.2O2-(CGO)纳米颗粒的相对简单的程序介绍到Ni/YSZ电极中,以实现稳定的细胞性能。用裸露的Ni/YSZ电极和CGO浸润的Ni/YSZ电极进行了长期耐久性测试,在800摄氏度和-1.25 A CM(-2)下进行。通过测量细胞电压并获得电化学阻抗光谱来研究细胞稳定性。通过扫描和透射电子显微镜进行了测试细胞的验尸分析。 CGO纳米颗粒浸润将裸机电极的裸机Ni/YSZ电极的细胞电压降解速率从699 mV kH(-1)降低到66 mV kh(-1)。研究表明,在引入CGO纳米颗粒后,蒸汽还原机理发生了变化,并且电极降解起源于与裸露的Ni/YSZ电极相比的不同机制。

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