材料科学
氧化钇稳定氧化锆
电解质
阴极
介电谱
质子交换膜燃料电池
阳极
非阻塞I/O
烧结
化学工程
复合材料
立方氧化锆
燃料电池
陶瓷
化学
电化学
电极
物理化学
工程类
催化作用
生物化学
作者
Amir Reza Hanifi,Navjot Kaur Sandhu,Thomas H. Etsell,Partha Sarkar
摘要
Abstract A new proton conducting fuel cell design based on the BZCYY b electrolyte is studied in this research. In high‐performance YSZ ‐based SOFC s, the Ni‐ YSZ support plays a key role in providing required electrical properties and robust mechanical behavior. In this study, this well‐established Ni‐YSZ support is used to maintain the proton conducting fuel cell integrity. The cell is in a Ni‐YSZ (375 μm support)/Ni‐ BZCYY b (20 μm anode functional layer)/ BZCYY b (10 μm electrolyte)/ LSCF ‐ BZCYY b (25 μm cathode) configuration. Maximum power density values of 166, 218, and 285 mW /cm 2 have been obtained at 600°C, 650°C, and 700°C, respectively. AC impedance spectroscopy results show values of 2.17, 1.23, and 0.76 Ω·cm 2 at these temperatures where the main resistance contributor above 600°C is ohmic resistance. Very fine NiO and YSZ powders were used to achieve a suitable sintering shrinkage which can enhance the electrolyte sintering. During cosintering of the support and BZCYYb electrolyte layers, the higher shrinkage of the support layer led to compressive stress in the electrolyte, thereby enhancing its densification. The promising results of the current study show that a new generation of proton conducting fuel cells based on the chemically and mechanically robust Ni‐YSZ support can be developed which can improve long‐term performance and reduce fabrication costs of proton conducting fuel cells.
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