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Dependence of Electrical Properties on Thermal Reduction of Protecting Oxides for SOFC Interconnect Applications

机译:电性能对SOFC互连应用中保护性氧化物热还原的依赖性

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In this study, plasma sprayed (Mn,Co)_3O_4 (MCO) coatings with spinel structure are used to form protective layer for metallic interconnects of solid oxide fuel cells. The temperature during thermal spraying is high enough to change the crystal structure and conductivity of protective oxides. The structure change is caused by the removal of oxygen ions at higher temperature. This behavior is so called thermal reduction. Furthermore, the transformation of MCO spinel to a NaCl type structure causes the degradation in its conductivity by several orders of magnitude. With better understanding and control of thermal reduction and/or phase transformation, it is believed that the proper heat treatment is an adequate method to obtain desired properties for protective oxide. Thus, the objective of this study is (1) to investigate the influence of thermal reduction on the conductivity and crystal structure; and (2) to improve the performance of interconnect through proper annealing at desired temperatures. XRD, SEM, and impedance spectroscopy are used to characterize the protective oxides before and after annealing and thermal reduction.
机译:在这项研究中,具有尖晶石结构的等离子喷涂(Mn,Co)_3O_4(MCO)涂层用于形成固体氧化物燃料电池金属互连的保护层。热喷涂过程中的温度足够高,足以改变保护性氧化物的晶体结构和电导率。结构变化是由较高温度下的氧离子去除引起的。这种行为称为热还原。此外,MCO尖晶石向NaCl型结构的转变导致其电导率下降了几个数量级。通过更好地理解和控制热还原和/或相变,可以相信适当的热处理是获得所需保护氧化物性能的适当方法。因此,本研究的目的是(1)研究热还原对电导率和晶体结构的影响; (2)通过在所需温度下适当的退火来改善互连的性能。 XRD,SEM和阻抗谱用于表征退火和热还原前后的保护性氧化物。

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