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Heterostructured electrode with concentration gradient shell for highly efficient oxygen reduction at low temperature

机译:具有浓度梯度壳的异质结构电极可在低温下高效还原氧气

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摘要

Heterostructures of oxides have been widely investigated in optical, catalytic and electrochemical applications, because the heterostructured interfaces exhibit pronouncedly different transport, charge, and reactivity characteristics compared to the bulk of the oxides. Here we fabricated a three-dimensional (3D) heterostructured electrode with a concentration gradient shell. The concentration gradient shell with the composition of Ba0.5-xSr0.5-yCo0.8Fe0.2O3-δ (BSCF-D) was prepared by simply treating porous Ba0.5Sr0.5Co0.8Fe0.2O3-δ (BSCF) backbone with microwave-plasma. Electrochemical impedance spectroscopy reveals that the oxygen surface exchange rate of the BSCF-D is enhanced by ~250% that of the pristine BSCF due to the appearance of the shell. The heterostructured electrode shows an interfacial resistance as low as 0.148 Ω cm2 at 550°C and an unchanged electrochemical performance after heating treatment for 200 h. This method offers potential to prepare heterostructured oxides not only for electrochemical devices but also for many other applications that use ceramic materials.
机译:氧化物的异质结构已在光学,催化和电化学应用中得到广泛研究,因为与大部分氧化物相比,异质结构界面显示出明显不同的传输,电荷和反应性特征。在这里,我们制作了带有浓度梯度壳的三维(3D)异质结构电极。通过简单地用多孔的Ba0.5Sr0.5Co0.8Fe0.2O3-δ(BSCF)主链处理Ba0.5-xSr0.5-yCo0.8Fe0.2O3-δ(BSCF-D)组成的浓度梯度壳微波等离子体。电化学阻抗谱显示,由于外壳的出现,BSCF-D的氧表面交换速率比原始BSCF的氧表面交换速率提高了约250%。异质结构电极在550°C时的界面电阻低至0.148Ωcm 2 ,并且在200 h的热处理后电化学性能没有变化。该方法不仅为电化学装置而且为许多其他使用陶瓷材料的应用提供了制备异质结构氧化物的潜力。

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