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Synthesis of Octahedral-Shaped NiO and Approaches to an Anode Material of Manufactured Solid Oxide Fuel Cells Using the Decalcomania Method

机译:用癸烷烃法合成八面体NiO的八面体NiO和制造固体氧化物燃料电池的阳极材料

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摘要

Micrometer-sized and octahedral-shaped NiO particles were synthesized by microwave thermal treatment at 300 watt power for 15 min in a microwave chamber to be used as an anode material in solid oxide fuel cells. SEM image and particle size distribution revealed near-perfect octahedral NiO microparticle with sizes ranging from 4.0~11.0 μm. The anode functional layer (AFL, 60 wt% NiO synthesized: commercial 40 wt% YSZ), electrolyte (commercial Yttria-stabilized zirconia, YSZ), and cathode (commercial La0.8Sr0.2MnO3, LSM) layers were manufactured using the decalcomania method on a porous anode support, sequentially. The sintered electrolyte at 1450°C for 2 h using the decalcomania method was dense and had a thickness of about 10 μm. The cathode was sintered at 1250°C for 2 h, and it was porous. Using humidified hydrogen as a fuel, a coin cell with a 15 μm thick anode functional layer exhibited maximum power densities of 0.28, 0.38, and 0.65 W/cm2 at 700, 750, and 800°C, respectively. Otherwise, when a commercial YSZ anode functional layer was used, the maximum power density was 0.55 W/cm2 at 800°C.
机译:通过微波热处理以300瓦的电力处理在微波室中以300瓦的电力处理合成千微波热处理,以用作固体氧化物燃料电池中的阳极材料。 SEM图像和粒度分布显示近乎完美的八面体NiO微粒,尺寸范围为4.0〜11.0μm。使用Decalcomania方法制造阳极功能层(AFL,60wt%NIO:商业40wt%YSZ),电解质(商业yTTRIA稳定的氧化锆,YSZ)和阴极(商业LA0.8SR0.2MNO3,LSM)层在多孔阳极载体上,顺序地。使用癸酰胺胺方法1450℃的烧结电解质致密,厚度为约10μm。将阴极在1250℃下烧结2小时,并且是多孔的。使用潮湿的氢作为燃料,具有15μm厚的阳极功能层的硬币电池在700,750和800℃下分别显示出0.28,0.38和0.65w / cm 2的最大功率密度。否则,当使用商业YSZ阳极功能层时,最大功率密度在800℃下为0.55W / cm 2。

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