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首页> 外文期刊>Journal of the Korean Physical Society >Stability of a Cu0.7Co2.3O4 electrode during the oxygen evolution reaction for alkaline anion-exchange membrane water electrolysis
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Stability of a Cu0.7Co2.3O4 electrode during the oxygen evolution reaction for alkaline anion-exchange membrane water electrolysis

机译:碱性阴离子交换膜水电解氧进化反应期间Cu0.7CO2.3O4电极的稳定性

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摘要

The electrode materials for oxygen evolution, especially non-platinum group metal oxides, have attracted increasing attention. Among the spinel-type transition metal oxides, Cu0.7Co2.3O4 powders were evaluated as a potential replacement for expensive dimensionally stabilized anode materials. Cu0.7Co2.3O4 powder for use as an electrode material for oxygen evolution in an alkaline anion-exchange membrane water electrolyzer was prepared using a thermal decomposition method. The Cu0.7Co2.3O4 powders heat-treated at 250 A degrees C exhibited the same X-ray diffraction patterns without any secondary phases as the Co3O4 spinel structure did. The Cu0.7Co2.3O4 powders heat-treated at 250 A degrees C for 30 minutes showed the smallest mean particle size of approximately 376 nm with the powders having a homogeneous shape and size distribution. The fine powders with a relatively homogeneous size distribution showed a higher current density during the oxygen evolution reaction. The lifetime of the Cu0.7Co2.3O4 electrode was relatively long at a low current density, but was quickly shortened due to physical detachment of the Cu0.7Co2.3O4 powders as the current density was increased. This study showed that the efficiency and the stability of Cu0.7Co2.3O4 powders during the oxygen evolution reaction were related directly to the active electrode area.
机译:用于氧化的电极材料,尤其是非铂族金属氧化物,引起了越来越多的关注。在尖晶石型过渡金属氧化物中,Cu0.7CO2.3O4粉末被评价为昂贵的尺寸稳定的阳极材料的潜在替代品。使用热分解法制备用作碱性阴离子交换膜水电解槽中的用于氧化电极材料的电极材料。在250℃下进行热处理的Cu0.7CO2.3O4粉末,表现出与CO3O4尖晶石结构相同的X射线衍射图案,没有任何次级相。在250℃下热处理30分钟的Cu0.7CO2.3O4粉末显示出约376nm的最小平均粒度,粉末具有均匀的形状和尺寸分布。具有相对均匀尺寸分布的细粉末在氧进化反应期间显示出更高的电流密度。 Cu0.7Co2.3O4电极的寿命在低电流密度下相对长,但由于Cu0.7CO2.3O4粉末的物理脱离,随着电流密度的粉末的物理脱离,快速缩短。该研究表明,在氧进化反应期间Cu0.7CO2.3O4粉末的效率和稳定性直接与活性电极区域直接相关。

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