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首页> 外文期刊>Journal of power sources >Electrophoretic deposition on non-conducting substrates: The case of YSZ film on NiO-YSZ composite substrates for solid oxide fuel cell application
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Electrophoretic deposition on non-conducting substrates: The case of YSZ film on NiO-YSZ composite substrates for solid oxide fuel cell application

机译:在非导电基底上进行电泳沉积:在固体氧化物燃料电池应用的NiO-YSZ复合基底上YSZ膜的情况

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摘要

This paper report the results of our investigation on electrophoretic deposition (EPD) of YSZ particles from its suspension in acetylacetone onto a non-conducting NiO-YSZ substrate. In principle, it is not possible to carry out electrophoretic deposition on non-conducting substrates. In this case, the EPD of YSZ particles on a NiO-YSZ substrate was made possible through the use of an adequately porous substrate. The continuous pores in the substrates, when saturated with the solvent, helped in establishing a "conductive path" between the electrode and the particles in suspension. Deposition rate was found to increase with increasing substrate porosity up to a certain value. The higher the applied voltage, the faster the deposition. For a given applied voltage, there exists a threshold porosity value below which EPD becomes practically impossible. An SOFC constructed on bi-layers of NiO-YSZ/YSZ with YSZ layer thickness of 40 μm exhibited an open circuit voltage (OCV) of 0.97 V at 650℃ and peak power density of 263.8 mW cm~(-2) at 850℃ when tested with H_2 as fuel and ambient air as oxidant.
机译:本文报道了我们对YSZ颗粒从其在乙酰丙酮中的悬浮液电泳沉积到非导电NiO-YSZ衬底上的研究结果。原则上,不可能在非导电衬底上进行电泳沉积。在这种情况下,通过使用足够多孔的基板,可以在NiO-YSZ基板上进行YSZ颗粒的EPD。当基材中的连续孔被溶剂饱和时,有助于在电极和悬浮液中的颗粒之间建立“导电路径”。发现沉积速率随着基底孔隙率增加到一定值而增加。施加的电压越高,沉积越快。对于给定的施加电压,存在阈值孔隙率值,低于该阈值孔隙率实际上变得不可能。在YOZ层厚度为40μm的NiO-YSZ / YSZ双层结构上构建的SOFC在650℃时的开路电压(OCV)为0.97 V,在850℃时的峰值功率密度为263.8 mW cm〜(-2)当以H_2作为燃料和环境空气作为氧化剂进行测试时。

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