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Thickness Dependence of Oxygen Reduction Reaction Kinetics on Strontium-Substituted Lanthanum Manganese Perovskite Thin-Film Microelectrodes

机译:锶取代镧锰钙钛矿薄膜微电极上氧还原反应动力学的厚度依赖性

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摘要

Oxygen reduction reaction (ORR) kinetics was investigated on dense La₀.₈Sr₀.₂MnO₃ microelectrodes as a function of temperature and microelectrode thickness using electrochemical impedance spectroscopy. The surface oxygen exchange and mixed bulk/three-phase-boundary (TPB) charge transfer process were found to control ORR kinetics at high and low temperatures, respectively. The transition temperature from the mixed bulk/TPB charge transfer control to surface oxygen exchange was found to be highly dependent on the microelectrode thickness (~600degrees C for 65 nm vs ~800degreesC for 705 nm). These findings can be used to guide the design of electrodes that can operate at intermediate temperatures.
机译:用电化学阻抗谱研究了致密的La 3·3 Sr 3·2MnO 3微电极上的氧还原反应(ORR)动力学随温度和微电极厚度的变化。发现表面氧交换和混合本体/三相边界(TPB)电荷转移过程分别控制高温和低温下的ORR动力学。发现从混合本体/ TPB电荷转移控制到表面氧交换的转变温度高度依赖于微电极的厚度(65 nm时约为600℃,而705 nm时约为800℃)。这些发现可用于指导可在中间温度下运行的电极的设计。

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