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Evaluation of Ca3Co2O6 as cathode material for high-performance solid-oxide fuel cell

机译:Ca3Co2O6作为高性能固体氧化物燃料电池正极材料的评估

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摘要

A cobalt-based thermoelectric compound Ca3Co2O6 (CCO) has been developed as new cathode material with superior performance for intermediate-temperature (IT) solid-oxide fuel cell (SOFC). Systematic evaluation has been carried out. Measurement of thermal expansion coefficient (TEC), thermal-stress (σ) and interfacial shearing stress (τ) with the electrolyte show that CCO matches well with several commonly-used IT electrolytes. Maximum power density as high as 1.47 W cm−2 is attained at 800°C, and an additional thermoelectric voltage of 11.7 mV is detected. The superior electrochemical performance, thermoelectric effect, and comparable thermal and mechanical behaviors with the electrolytes make CCO to be a promising cathode material for SOFC.
机译:钴基热电化合物Ca3Co2O6(CCO)已开发为新型阴极材料,具有出色的中温(IT)固体氧化物燃料电池(SOFC)性能。已经进行了系统评价。对电解质的热膨胀系数(TEC),热应力(σ)和界面剪切应力(τ)的测量表明,CCO与几种常用的IT电解质非常匹配。在800°C时可达到1.47 asW cm -2 的最大功率密度,并检测到11.7 mV的附加热电电压。优异的电化学性能,热电效应以及与电解质相当的热学和机械性能使CCO成为有前途的SOFC阴极材料。

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