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Correlated electron perovskite films for optical sensing applications

机译:用于光学传感应用的相关电子钙钛矿薄膜

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Advanced power generation technologies including solid oxide fuel cells require advancements in sensor technologies for efficient operation. Gas sensors for SOFC anode streams must be stable in high temperature and under reducing atmospheres. Optical sensing technologies offer the potential for good stability and sensing response under harsh conditions but are relatively new as compared to alternative sensing approaches and require significant developments in underlying device and enabling materials technology. In this paper, the near infrared optical sensing response of La_(0.8)Sr_(0.2)MnO_3, a representative correlated perovskite material, is presented. Hydrogen sensing performance was measured in laboratory scale sensing experiments in the range of 1-4% hydrogen. The effect of oxygen on sensor recovery behavior was also examined. The films show a large, recoverable response to the introduction of hydrogen to the gas stream. The results presented here suggest this unique class of materials is a strong candidate for future sensor development efforts targeted at optical sensor applications but also requires additional fundamental research to understand the mechanistic origin of observed optical sensing responses.
机译:先进发电技术,包括固体氧化物燃料电池需要在传感器技术用于有效操作的进步。对于SOFC阳极流气体传感器必须在高温下和还原气氛稳定。光学感测技术提供良好的稳定性和在恶劣条件下感测响应电位,但相比于替代感测方法和需要在底层设备和使材料技术显著的发展是相对较新的。在本文中,了La_的近红外光的感测响应(0.8)SR_(0.2)MnO_3,代表性的相关钙钛矿材料,提出。氢感测性能在实验室规模的感测实验中测量在1-4%的氢的范围内。还检查了氧对传感器恢复行为的影响。所述膜显示出引入氢气与气流大的,可恢复的响应。结果呈现在这里建议这一独特类别的材料是针对光学传感器应用的未来传感器的发展努力的一个强有力的候选人,但还需要更多的基础研究,了解观察到的光学传感响应机制起源。

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