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Eggshell membrane-templated synthesis of highly crystalline perovskite ceramics for solid oxide fuel cells

机译:蛋壳膜模板合成用于固体氧化物燃料电池的高结晶钙钛矿陶瓷

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摘要

Highly crystalline perovskite ceramics were templated by an eggshell membrane (ESM) via strong metal-protein bonding. Templated Sm_(0.5)Sr_(0.5)CoO3 (SSC) ceramics retained an interwoven fibrous structure at a temperature up to 1000 °C. The use of citric acid-assisted sol-gel coating in the template synthesis greatly enhanced the crystallininty of the ceramic because the sol-gel process ensured the stoichiometric adsorption of ceramic precursors, and it also affected ceramic morphology. The highly crystalline SSC ceramic was used as a cathode material of solid oxide fuel cell (SOFC), and the cathode properties were compared with those prepared with the ceramic synthesized via a conventional combustion method. The maximum power density of the cell made with the templated SSC was 44.5% and 29.8% higher than that made with the combusted SSC at 600 °C and 500 °C, respectively, because the highly porous cathode constructed with the templated SSC reduced the cell concentration polarization and cathode polarization resistance. This study suggests high-performance perovskite ceramic for SOFC was produced via the template synthesis.
机译:蛋壳膜(ESM)通过牢固的金属-蛋白质键合将高结晶钙钛矿陶瓷模板化。模板化的Sm_(0.5)Sr_(0.5)CoO3(SSC)陶瓷在高达1000°C的温度下保留了交织的纤维结构。在模板合成中使用柠檬酸辅助溶胶-凝胶涂层极大地提高了陶瓷的结晶度,因为溶胶-凝胶工艺确保了陶瓷前体的化学计量吸附,并且还影响了陶瓷的形态。将高结晶度的SSC陶瓷用作固体氧化物燃料电池(SOFC)的阴极材料,并将阴极性能与通过常规燃烧方法合成的陶瓷制备的阴极性能进行了比较。用模板化SSC制成的电池的最大功率密度分别比燃烧的SSC在600°C和500°C时高44.5%和29.8%,这是因为用模板化SSC制成的高度多孔的阴极减少了电池浓差极化和阴极极化电阻。这项研究表明,通过模板合成可生产用于SOFC的高性能钙钛矿陶瓷。

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