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Leakage Current and Chemical Potential Profile in Proton-Conducting Bi-Layered Solid Oxide Electrolyte with BZY and Hole-Blocking Layers

机译:质子导电双层固体氧化物电解液中漏电流和化学电位型材,具有BZY和空穴阻挡层

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Solid oxide fuel cells (SOFCs) with proton-conducting solid electrolyte, instead of the oxide-ion conducting solid electrolyte have attracted attentions because of their high potential to reduce operating temperatures and to enhance the electrical efficiencies of SOFCs. In addition, the proton-conducting SOFCs with multistage electrochemical oxidation configuration will be promising technology for critically-high electric efficiencies. However, it is known that there are non-negligible charge -carriers other than protons in typical proton-conducting solid oxide electrolytes at relatively high temperatures. The existence of the partial conductivities of holes and/or electrons will cause the internal leakage current that consumes fuel but never generates any electrical power output. The higher ratio of the leakage current to external current will more deteriorate the electrical efficiency. In this study, the effects of blocking -layers formed on the air side surface of base electrolyte layer consisting of BaZr_(0.8)Y_(0.2)O_(3-δ) (BZY82) for suppressing the leakage current have been investigated by using electrochemical parameters of the partial conduction of the materials. The chemical potential profile and leakage current showed large dependence on the material of the blocking -layer. Lanthanum tungstate was found to play a role as unique and strong blocking -layer against the leakage current.
机译:具有质子传导固体电解质的固体氧化物燃料电池(SOFC)代替氧化物离子导电固体电解质由于其高潜力而引起关注,以减少操作温度并增强SOFC的电效率。此外,具有多级电化学氧化构型的质子导电SOFC将是批判性高电效率的有前途的技术。然而,已知存在在相对高温下的典型质子传导固体氧化物电解质中的质子的不可忽略的电荷 - 除了质子。孔和/或电子的部分导电性的存在将导致消耗燃料的内部漏电流,但从不会产生任何电力输出。漏电流与外部电流的较高比率将更加劣化电效率。在该研究中,通过使用电化学研究了由BAZR_(0.8)Y_(0.2)O_(3-Δ)(BZY82)组成的基础电解质层的空气侧表面上的阻断 - 层的影响已经研究了用于抑制漏电流的基础电解质层。已经通过电化学研究了用于抑制漏电流的基础电解质层。材料部分传导的参数。化学潜力曲线和漏电流显示出对阻塞式材料的材料的大依赖性。发现镧钨酸酯在漏电流中起着独特而强大的阻挡层发挥作用。

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