材料科学
四方晶系
固体氧化物燃料电池
掺杂剂
晶体结构
热膨胀
氧化物
钙钛矿(结构)
电导率
电极
X射线光电子能谱
兴奋剂
分析化学(期刊)
化学工程
化学
结晶学
物理化学
光电子学
冶金
阳极
工程类
色谱法
作者
Taolong Su,Tao Zhang,Hui Xie,Jianjun Zhong,Changrong Xia
标识
DOI:10.1016/j.ijhydene.2022.03.130
摘要
SrFe0.9-xW0.1TixO3-δ (SFWT, x = 0.1 and 0.2) perovskite oxides are synthesized by combustion process. The experimental and computational analyses are conducted to reveal the effect of dopant W and Ti on the material properties and structure. The crystal structure transform from tetragonal (I4/m) to cubic(pm3¯m) when temperature is higher than 700 °C. Substitution of Fe with Ti can enhance the lattice structure. However, the Ti incorporation causes the increase in thermal expansion coefficient above 700 °C. The XPS and TG analyses show that the Ti incorporation also decreases oxygen activity. Thus, it is important to optimize the Ti content to design the SFWT materials to gain fast kinetics and high stability. The total conductivity (48 S cm−1), polarization resistances of symmetric single cell (0.28 Ω cm2), and durability (150 h, at 750 °C) reveal that the SrFe0.8W0.1Ti0.1O3-δ is a promising electrode materials for symmetric fuel cell. The first-principles calculation suggests that the Fe–O bond in SFWT dominates electric conductivity and can be suitably tailored by the dopant Ti and W.
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