首页> 外文期刊>Journal of Materials Science >Layered microstructures based on BaZr0.85Y0.15O3-delta by pulsed laser deposition for metal-supported proton ceramic electrolyser cells
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Layered microstructures based on BaZr0.85Y0.15O3-delta by pulsed laser deposition for metal-supported proton ceramic electrolyser cells

机译:基于BaZr0.85Y0.15O3-Delta的层状微观结构通过脉冲激光沉积金属负载质子陶瓷电解槽细胞

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摘要

Planar metal-supported cell designs provide cost-effective scaling-up of solid oxide fuel cells and electrolysers. Here, we report on the fabrication of a BaZr0.85Y0.15O3-delta-NiO (BZY15-NiO) composite electrode and BaZr0.85Y0.15O3-delta (BZY15) proton-conducting electrolyte films on metal and ceramic substrates using pulsed laser deposition (PLD). The results demonstrate successful sequential deposition of porous electrode and dense electrolyte structure by PLD at moderate temperatures, without the need for subsequent high-temperature sintering. The decrease in roughness of the metal substrate used for deposition by spray-coating intermediary oxide layers had significant importance to the fabrication of functional layers as thin films. Crystalline porous BZY15-NiO and dense BZY15 films were sequentially deposited at high substrate temperature on metal supports (MS) with or without an electron-conducting barrier oxide layer, e.g. MS/(BZY15-Ni)/(BZY15-NiO)/BZY15 and MS/CeO2/(BZY15-NiO)/BZY15. The different microstructures for electrode and electrolyte were achieved with deposition steps at different substrate temperatures (800, 600 degrees C) and a gradual decrease in the pressure of O-2 in the deposition chamber.
机译:平面金属支撑的细胞设计提供了固体氧化物燃料电池和电解素的经济效益缩放。在这里,我们使用脉冲激光沉积报告金属和陶瓷基板上的BaZr0.85Y0.15O3-Delta-NiO(BZY15-NIO)复合电极和BaZr0.850.15O3-Delta(BZY15)质子导电电解质膜的制备(PLD)。结果表明,通过PLD在中等温度下成功沉积多孔电​​极和致密电解质结构,而不需要随后的高温烧结。用于通过喷涂中间氧化物层沉积的金属基板的粗糙度的降低对用作薄膜的功能层的制造具有显着的重要性。结晶多孔BZY15-NIO和致密的BZY15膜在高衬底温度下依次沉积金属支撑件(MS),或者没有电子导电阻挡氧化物层。 MS /(BZY15-NI)/(BZY15-NIO)/ BZY15和MS / CEO2 /(BZY15-NIO)/ BZY15。通过在不同的基板温度(800,600℃)处的沉积步骤和沉积室中O-2的压力逐渐降低,实现了电极和电解质的不同微观结构。

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