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Nanoporous silver cathode surface-treated by aerosol-assisted chemical vapor deposition of gadolinia-doped ceria for intermediate-temperature solid oxide fuel cells

机译:气溶胶辅助氧化ado掺杂二氧化铈对中温固体氧化物燃料电池表面处理的纳米多孔银阴极

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摘要

Herein, a nanoporous silver surface treated with gadolinia-doped ceria (GDC) is evaluated as a cathode for intermediate-temperature solid oxide fuel cells operating below 500 degrees C. For uniform surface treatment on the porous silver, aerosol-assisted chemical vapor deposition (AACVD) is used; it is a non-vacuum process and is considered as an economical alternative to the expensive vacuum-environment thin-film fabrication methods. Consequently, a uniform coating of AACVD GDC on the Ag surface is successfully achieved, which is confirmed by high-resolution transmission electron microscopy. The optimized amount of AACVD GDC enhances fuel cell performance compared to cells with bare Ag, in terms of the power and long-term stability measured by current voltage characteristics, electrochemical impedance spectroscopy, and potentiostatic amperometry. This performance is even more significant than that from the cell with a platinum cathode, which, to our best knowledge, is known as the best-performing catalyst for solid oxide fuel cells in the intermediate- and low-temperature regimes. The power enhancement is attributed to the improved kinetics with the GDC surface coating; moreover, this oxide decoration is proven effective in preventing the thermal agglomeration of Ag, as confirmed by the morphology comparison before and after the long-term test.
机译:本文中,将经氧化g掺杂的二氧化铈(GDC)处理的纳米多孔银表面评估为在500摄氏度以下运行的中温固体氧化物燃料电池的阴极。为在多孔银上进行均匀的表面处理,采用气溶胶辅助化学气相沉积(使用AACVD);它是一种非真空工艺,被认为是昂贵的真空环境薄膜制造方法的经济替代品。结果,成功地在Ag表面上实现了AACVD GDC的均匀涂层,这由高分辨率透射电子显微镜证实。与通过裸银电池相比,优化的AACVD GDC量可提高燃料电池的性能,包括通过电流电压特性,电化学阻抗谱和恒电位安培法测量的功率和长期稳定性。此性能甚至比带有铂阴极的电池更重要,据我们所知,铂阴极在中低温条件下被称为固体氧化物燃料电池的最佳性能催化剂。功率的提高归因于GDC表面涂层动力学的改善。此外,如长期测试前后的形态比较所证实,这种氧化物装饰物被证明可有效地防止Ag的热团聚。

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