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室温下紫外光照下柔性硫化锡传感器的缺陷诱导气敏特性

Defect-Induced Gas-Sensing Properties of a Flexible SnS Sensor under UV Illumination at Room Temperature.

作者信息

Manh Hung Nguyen, Nguyen Chuong V, Arepalli Vinaya Kumar, Kim Jeha, Duc Chinh Nguyen, Nguyen Tien Dai, Seo Dong-Bum, Kim Eui-Tae, Kim Chunjoong, Kim Dojin

机构信息

Department of Materials Science and Engineering, Chungnam National University, Daejeon 34134, Korea.

Department of Materials Science and Engineering, Le Quy Don Technical University, Hanoi 100000, Vietnam.

出版信息

Sensors (Basel). 2020 Oct 7;20(19):5701. doi: 10.3390/s20195701.

Abstract

Tin sulfide (SnS) is known for its effective gas-detecting ability at low temperatures. However, the development of a portable and flexible SnS sensor is hindered by its high resistance, low response, and long recovery time. Like other chalcogenides, the electronic and gas-sensing properties of SnS strongly depend on its surface defects. Therefore, understanding the effects of its surface defects on its electronic and gas-sensing properties is a key factor in developing low-temperature SnS gas sensors. Herein, using thin SnS films annealed at different temperatures, we demonstrate that SnS exhibits n-type semiconducting behavior upon the appearance of S vacancies. Furthermore, the presence of S vacancies imparts the n-type SnS sensor with better sensing performance under UV illumination at room temperature (25 °C) than that of a p-type SnS sensor. These results are thoroughly investigated using various experimental analysis techniques and theoretical calculations using density functional theory. In addition, n-type SnS deposited on a polyimide substrate can be used to fabricate high-stability flexible sensors, which can be further developed for real applications.

摘要

硫化锡(SnS)因其在低温下有效的气体检测能力而闻名。然而,便携式和柔性SnS传感器的发展受到其高电阻、低响应和长恢复时间的阻碍。与其他硫族化物一样,SnS的电子和气体传感特性强烈依赖于其表面缺陷。因此,了解其表面缺陷对其电子和气体传感特性的影响是开发低温SnS气体传感器的关键因素。在此,通过使用在不同温度下退火的SnS薄膜,我们证明SnS在出现S空位时表现出n型半导体行为。此外,S空位的存在使n型SnS传感器在室温(25°C)的紫外光照下比p型SnS传感器具有更好的传感性能。使用各种实验分析技术和基于密度泛函理论的理论计算对这些结果进行了深入研究。此外,沉积在聚酰亚胺基板上的n型SnS可用于制造高稳定性柔性传感器,可进一步开发用于实际应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6fa/7583859/164ef77d15b3/sensors-20-05701-g001.jpg

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