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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Ultrafast chemical dynamic behavior in highly epitaxial LaBaCo2O_(5+δ) thin films
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Ultrafast chemical dynamic behavior in highly epitaxial LaBaCo2O_(5+δ) thin films

机译:高外延LaBaCo2O_(5 +δ)薄膜中的超快化学动力学行为

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摘要

The redox reactions of highly epitaxial LaBaCo2O_(5+δ) (LBCO) thin films exposed to the switching flow of reducing (H2) and oxidizing (O2) gases were examined at various temperatures between 260 and 700 °C. Their electrical resistance was measured using a precise ac bridge measurement system. The as-grown LBCO films have very good electrical conductivity at low and medium temperatures between 400 and 700 °C, and are extremely sensitive to reducing and oxidizing environments with superfast redox dynamics. The LBCO thin films show more complex redox reactions at low temperatures (300-350 °C), suggesting the occurrence of conducting-to-insulating-to-conducting transitions during the redox reactions. In particular, the insulating-to-conducting transition under an oxidation process is superfast, with the largest resistance change of up to 3 × 10~7 Ω s~(-1), occurring even at a low temperature of 300 °C. The extremely short response time, the giant resistance change, and the excellent chemical stability in a broad temperature range from 260 to 700 °C suggests that the highly epitaxial LBCO thin-films can be excellent candidates for low-temperature solid oxide fuel cells, chemical sensors, and catalyst applications.
机译:在260至700°C之间的各种温度下,研究了高外延LaBaCo2O_(5 +δ)(LBCO)薄膜在还原(H2)和氧化(O2)气体的切换流下的氧化还原反应。使用精密的交流电桥测量系统测量其电阻。所生长的LBCO薄膜在400至700°C的中低温下具有很好的导电性,并且对氧化还原环境具有超快的氧化还原动力学非常敏感。 LBCO薄膜在低温(300-350°C)下显示出更复杂的氧化还原反应,表明在氧化还原反应过程中发生了从导电到绝缘到导电的转变。尤其是,在氧化过程中,绝缘到导电的过渡非常快,即使在300°C的低温下,最大的电阻变化也高达3×10〜7Ωs〜(-1)。极短的响应时间,巨大的电阻变化以及在260至700°C的宽温度范围内出色的化学稳定性表明,高外延LBCO薄膜可以作为低温固体氧化物燃料电池,化学药品的极佳候选材料传感器和催化剂应用。

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