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基于钙钛矿量子点的光学荧光传感器用于一氧化氮气体检测。

Optical fluorescent sensor based on perovskite QDs for nitric oxide gas detection.

出版信息

Appl Opt. 2023 Apr 20;62(12):3176-3181. doi: 10.1364/AO.486952.

Abstract

In this paper, a new, to the best of our knowledge, optical fluorescent sensor for the sensing of nitric oxide (NO) gas is developed. The optical NO sensor based on perovskite quantum dots (PQDs) is coated on the surface of filter paper. The PQD sensing material can be excited with a UV LED of a central wavelength at 380 nm, and the optical sensor has been tested in regard to monitoring different NO concentrations from 0-1000 ppm. The sensitivity of the optical NO sensor is represented in terms of the ratio / , where and represent the detected fluorescence intensities in pure nitrogen and 1000 ppm NO environments, respectively. The experimental results show that the optical NO sensor has a sensitivity of 6. In addition, the response time was 26 s when switching from pure nitrogen to 1000 ppm NO and 117 s when switching from 1000 ppm NO to pure nitrogen. Finally, the optical sensor may open a new approach for the sensing of the NO concentration in the harsh reacting environmental applications.

摘要

在本文中,我们开发了一种新的、据我们所知的用于检测一氧化氮(NO)气体的光学荧光传感器。基于钙钛矿量子点(PQDs)的光学 NO 传感器涂覆在滤纸条的表面。PQD 传感材料可以用中心波长为 380nm 的紫外 LED 激发,并且已经对该光学传感器进行了测试,以监测从 0-1000ppm 的不同 NO 浓度。光学 NO 传感器的灵敏度用比率 / 表示,其中 和 分别表示在纯氮气和 1000ppmNO 环境中检测到的荧光强度。实验结果表明,光学 NO 传感器的灵敏度为 6。此外,从纯氮气切换到 1000ppmNO 的响应时间为 26s,从 1000ppmNO 切换到纯氮气的响应时间为 117s。最后,该光学传感器可能为在恶劣反应环境应用中检测 NO 浓度开辟了新途径。

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