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(La,Sr)(Co,Fe)O3-(Ce,Gd)(Sr)O2 electrospun nanofiber composite cathode for solid oxide fuel cells

机译:(LA,SR)(CO,Fe)O 3-(Ce,Gd)(SR)O2 Electrom纳米纤维复合阴极用于固体氧化物燃料电池

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La0.6Sr0.4Co0.2Fe0.8O3????? (LSCF)-Ce0.78Gd0.2Sr0.02O2????? (GDCSr) electrospun nanofibers composite cathode which was screen printed on GDCSr electrolytes were studied for application in intermediate temperature SOFC. Impedance spectroscopy measurements were performed in ambient air over a temperature range from 500???800??C. The addition of 20wt.% GDCSr nanofiber to LSCF resulted in an increasing of 40% porosity value which enhance the electrochemical properties by providing much amount of triple phase boundaries. The nanofiber composite cathode exhibits an increasing exchange current density and a decreasing cathode polarization resistance. Nanofiber GDCSr plays an important role as a porosity controller and an ionic pathway for oxygen ion diffusion inside the composite cathode structure.
机译:la0.6sr0.4co0.2fe0.8o3 ????? (lscf)-ce0.78gd0.2sr0.02o2 ????? (GDCSR)在中间温度SOFC中,研究了在GDCSR电解质上印刷的筛网的电纺纳米纤维复合阴极。在环境空气中在500℃的环境空气中进行阻抗光谱测量值。添加20wt。%GDCSR纳米纤维到LSCF导致40%的孔隙率值,通过提供大量的三相界限来增强电化学性质。纳米纤维复合阴极表现出增加的交换电流密度和降低的阴极偏振电阻。纳米纤维GDCSR作为孔隙率控制器和用于复合阴极结构内的氧离子扩散的离子途径起到重要作用。

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