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基于紫外光照射下的 p 型 MoTe 的超高灵敏且完全可逆的 NO 气体传感。

Ultrasensitive and Fully Reversible NO Gas Sensing Based on p-Type MoTe under Ultraviolet Illumination.

机构信息

State Key Laboratory of Precision Measuring Technology and Instruments, School of Precision Instruments and Optoelectronics Engineering , Tianjin University , No. 92 Weijin Road , Tianjin 300072 , China.

Qiushi Honors College , Tianjin University , No. 92 Weijin Road , Tianjin 300072 , China.

出版信息

ACS Sens. 2018 Sep 28;3(9):1719-1726. doi: 10.1021/acssensors.8b00461. Epub 2018 Aug 27.

Abstract

The unique properties of two-dimensional (2D) materials make them promising candidates for chemical and biological sensing applications. However, most 2D material sensors suffer from extremely long recovery time due to the slow molecular desorption at room temperature. Here, we report an ultrasensitive p-type molybdenum ditelluride (MoTe) gas sensor for NO detection with greatly enhanced sensitivity and recovery rate under ultraviolet (UV) illumination. Specifically, the sensitivity of the sensor to NO is dramatically enhanced by 1 order of magnitude under 254 nm UV illumination as compared to that in the dark condition, leading to a remarkable low detection limit of 252 ppt. More importantly, the p-type MoTe sensor can achieve full recovery after each sensing cycle well within 160 s at room temperature. Finally, the p-type MoTe sensor also exhibits excellent sensing performance to NO in ambient air and negligible response to HO, indicating its great potential in practical applications, such as breath analysis and ambient NO detection. Such impressive features originate from the activated interface interaction between the gas molecules and p-type MoTe surface under UV illumination. This work provides a promising and easily applicable strategy to improve the performance of the gas sensors based on 2D materials.

摘要

二维(2D)材料的独特性质使其成为化学和生物传感应用的有前途的候选材料。然而,由于室温下分子解吸缓慢,大多数 2D 材料传感器的恢复时间非常长。在这里,我们报告了一种超灵敏的 p 型二碲化钼(MoTe)气体传感器,用于检测 NO,在紫外(UV)照射下具有大大提高的灵敏度和恢复速率。具体而言,与黑暗条件相比,传感器对 NO 的灵敏度在 254nmUV 照射下显著提高了 1 个数量级,导致检测限低至 252ppt。更重要的是,p 型 MoTe 传感器可以在室温下每个传感循环后在 160 秒内完全恢复。最后,p 型 MoTe 传感器对环境空气中的 NO 也表现出优异的传感性能,对 HO 的响应可忽略不计,表明其在实际应用中具有巨大的潜力,例如呼吸分析和环境 NO 检测。这些令人印象深刻的特性源于气体分子与 p 型 MoTe 表面在 UV 照射下的界面相互作用。这项工作提供了一种有前途且易于应用的策略,可提高基于 2D 材料的气体传感器的性能。

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