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Defect chemistry and oxygen non-stoichiometry in SrFe0.2Co0.4Mo0.4O3-delta ceramic oxide for solid oxide fuel cells

机译:SRFE0.2CO0.4MO0.4O3-DELTA用于固体氧化物燃料电池的缺陷化学和氧非化学计量

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SrFe0.2Co0.4Mo0.4O3-delta (SFCM) is a ceramic oxide that has the potential to replace conventional Ni-based cermet anodes and is appropriate for use in solid oxide fuel cells operating at low temperatures (below 650 degrees C). SFCM was shown to be phase stable with n-type conductivity above 43 S/cm under reducing conditions and reversibly creates secondary phases under oxidizing conditions with p-type conductivity around 4 S/cm at 600 degrees C. SFCM begins desorbing oxygen and creating vacancies under nitrogen at 350 degrees C and continues to do so above 800 degrees C. Under oxidizing conditions, SFCM remains near stoichiometric, with oxygen non-stoichiometry changes below delta = 0.003. Once exposed to reducing conditions, SFCM can obtain a non-stoichiometry up to delta = 0.176 due to the reduction of the three multivalent B-site cations resulting in a low enthalpy of formation for oxygen vacancies at 109 kJ mol(-1). This data is used to propose a low pO(2) defect equilibrium model and diagram to explain the oxygen vacancy generation behavior under reducing conditions across temperatures.
机译:SRFE0.2CO0.4MO0.4O3-DELTA(SFCM)是一种陶瓷氧化物,具有替代常规的基于Ni的金属陶瓷阳极,并且适用于在低温下操作的固体氧化物燃料电池(低于650℃)。在还原条件下,SFCM被同相稳定,在43 s / cm以上,在还原条件下,在氧化条件下可逆地产生二次相,在600℃下的p型导电率约为4 s / cm。SFCM开始解吸氧气并产生空位在氮气下在350℃下继续,在氧化条件下继续如800℃,SFCM仍然附近化学计量,氧非化学计量低于Delta = 0.003。一旦暴露于还原条件,由于三种多价B位阳离子的减少导致109kJ摩尔(-1)的氧空位形成低焓,SFCM可以获得直至Delta = 0.176的非化学计量= 0.176。该数据用于提出低PO(2)缺陷平衡模型和图,以解释在降低温度下的降低条件下的氧空位生成行为。

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