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用于室温操作的离子激活化学电阻式气体传感器。

Ionic-Activated Chemiresistive Gas Sensors for Room-Temperature Operation.

作者信息

Song Young Geun, Shim Young-Seok, Suh Jun Min, Noh Myoung-Sub, Kim Gwang Su, Choi Kyoung Soon, Jeong Beomgyun, Kim Sangtae, Jang Ho Won, Ju Byeong-Kwon, Kang Chong-Yun

机构信息

Center for Electronic Materials, Korea Institute of Science and Technology (KIST), Seoul, 02792, Republic of Korea.

Display and Nanosystem Laboratory, School of Electrical Engineering, Korea University, Seoul, 02841, Republic of Korea.

出版信息

Small. 2019 Oct;15(40):e1902065. doi: 10.1002/smll.201902065. Epub 2019 Aug 5.

Abstract

The development of high performance gas sensors that operate at room temperature has attracted considerable attention. Unfortunately, the conventional mechanism of chemiresistive sensors is restricted at room temperature by insufficient reaction energy with target molecules. Herein, novel strategy for room temperature gas sensors is reported using an ionic-activated sensing mechanism. The investigation reveals that a hydroxide layer is developed by the applied voltages on the SnO surface in the presence of humidity, leading to increased electrical conductivity. Surprisingly, the experimental results indicate ideal sensing behavior at room temperature for NO detection with sub-parts-per-trillion (132.3 ppt) detection and fast recovery (25.7 s) to 5 ppm NO under humid conditions. The ionic-activated sensing mechanism is proposed as a cascade process involving the formation of ionic conduction, reaction with a target gas, and demonstrates the novelty of the approach. It is believed that the results presented will open new pathways as a promising method for room temperature gas sensors.

摘要

室温下工作的高性能气体传感器的研发已引起了广泛关注。遗憾的是,传统的化学电阻式传感器机制在室温下受到与目标分子反应能量不足的限制。在此,报道了一种采用离子激活传感机制的室温气体传感器新策略。研究表明,在湿度存在的情况下,通过在SnO表面施加电压会形成氢氧化物层,从而导致电导率增加。令人惊讶的是,实验结果表明,在潮湿条件下,该传感器在室温下对NO检测具有理想的传感行为,检测限可达万亿分之一以下(132.3 ppt),并能快速恢复(25.7 s)至5 ppm NO。离子激活传感机制被认为是一个涉及离子传导形成、与目标气体反应的级联过程,展示了该方法的新颖性。相信所呈现的结果将为室温气体传感器开辟新的途径,成为一种有前途的方法。

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