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首页> 外文期刊>ACS nano >Stable and Selective Humidity Sensing Using Stacked Black Phosphorus Flakes
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Stable and Selective Humidity Sensing Using Stacked Black Phosphorus Flakes

机译:使用堆叠的黑色磷片稳定和选择性的湿度感测

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摘要

Black phosphorus (BP) atomic layers are known to undergo chemical degradation in humid air. Yet in more robust configurations such as films, composites, and embedded structures, BP can potentially be utilized in a large number of practical applications. In this study, we explored the sensing characteristics of BP films and observed an ultrasensitive and selective response toward humid air with a trace-level detection capability and a very minor drift over time. Our experiments show that the drain current of the BP sensor increases by similar to 4 orders of magnitude as the relative humidity (RH) varies from 10% to 85%, which ranks it among the highest ever reported values for humidity detection. The mechanistic studies indicate that the operation principle of the BP film sensors is based on the modulation in the leakage ionic current caused by autoionization of water molecules and ionic solvation of the phosphorus oxoacids produced on moist BP surfaces. Our stability tests reveal that the response of the BP film sensors remains nearly unchanged after prolonged exposures (up to 3 months) to ambient conditions. This study opens up the route for utilizing BP stacked films in many potential applications such as energy generation/storage systems, electrocatalysis, and chemical/biosensing.
机译:已知黑磷(BP)原子层会在潮湿空气中发生化学降解。然而,在膜,复合材料和嵌入式结构等更坚固的配置中,BP可以潜在地用于大量实际应用中。在这项研究中,我们探索了BP膜的传感特性,并观察到了对湿空气的超灵敏和选择性响应,并具有痕量水平的检测能力,并且随时间变化很小。我们的实验表明,当相对湿度(RH)从10%变为85%时,BP传感器的漏极电流增加了大约4个数量级,这使其成为有史以来湿度检测值最高的报告之一。机理研究表明,BP膜传感器的工作原理是基于对水分子自电离和在潮湿BP表面产生的磷含氧酸的离子化作用所引起的泄漏离子电流的调制。我们的稳定性测试表明,在长时间(长达3个月)的环境条件下,BP薄膜传感器的响应几乎保持不变。这项研究开辟了在许多潜在应用中使用BP堆叠膜的途径,例如能量产生/存储系统,电催化和化学/生物传感。

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