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Minimized thermal expansion mismatch of cobalt-based perovskite air electrodes for solid oxide cells

机译:最小化热膨胀不匹配钴基钙钛矿固体空气电极氧化细胞

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摘要

The mismatch of thermal expansion coefficients (TECs) between cobalt-containing perovskite air electrodes and electrolytes is a great challenge for the development of thermo-mechanically durable solid oxide cells (SOCs). In this work, we propose a facile design principle to directly grow highly dispersed Co reactive sites onto ion-conducting scaffolds and confine the dimension of active centres within nanoscale. As a representative, the Co-socketed BaCe0.7Zr0.2Y0.1O3−δ perovskite (denoted as R-BCZY-Co) was constructed via a consecutive sol–gel and in situ exsolution approach. Combined XRD, H2-TPR, SEM and TEM results confirm the emergence of Co nanoparticles on a BCZY matrix without the segregation of a secondary Co-rich phase. The symmetric half-cell measurement suggests that R-BCZY-Co air electrode with the optimal Co content of 10 mol% exhibits a 7-fold promoted oxygen activation performance with a polarization resistance of ∼0.17 Ω cm2 at 750 °C. The TEC mismatch between fabricated R-BCZY-Co electrodes and BCZY electrolytes is minimized down to only ∼11.4%, which is significantly lower than that of other representative counterparts. Moreover, the detailed XPS result proves that the architecture of exsolved Co on BCZY possesses a higher concentration of surface oxygen vacancy, which further benefits the kinetics of ion diffusion and oxygen absorption.
机译:热膨胀系数的不匹配(tec) cobalt-containing钙钛矿的空气电极和电解质是一个巨大的挑战对于形变场的发展持久的固体氧化物电池(soc)。我们提出一个简单直接的设计原则生长高度分散的公司反应网站上ion-conducting支架和限制尺寸在纳米级活性中心。Co-socketed代表BaCe0.7Zr0.2Y0.1O3−δ钙钛矿(表示通过连续R-BCZY-Co)构造溶胶-凝胶法和原位脱溶的方法。H2-TPR XRD, SEM和TEM结果确认Co纳米粒子的出现BCZY矩阵没有第二个Co-rich的隔离阶段。表明R-BCZY-Co空气电极的最优10 mol %展品内容7倍促进氧活化性能的极化电阻0.17∼Ωcm2在750°C。装配式R-BCZY-Co TEC的不匹配电极和电解质BCZY最小化只有∼11.4%,显著降低比其他同行的代表。此外,详细的XPS结果证明建筑exsolved BCZY具有有限公司更高浓度的表面氧空位,这进一步有利于离子动力学扩散和氧气的吸收。

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