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基于ZIF-8/聚二甲基硅氧烷复合膜的多模干涉甲烷传感器。

Multimode interference methane sensor based on a ZIF-8/PDMS composite film.

作者信息

Li Yan, Wang Zelong, Li Xinghan, Lu Ke, Zhu Kehui, Yang Fuling

出版信息

Opt Lett. 2024 Jun 15;49(12):3324-3327. doi: 10.1364/OL.527594.

Abstract

A multimode interference methane sensor based on a ZIF-8/PDMS composite film is proposed. The sensing principle is that the refractive index of the ZIF-8/PDMS composite film changes when it adsorbs methane, leading to a measurable optical path difference during the coupling of the cladding higher-order modes and the fundamental mode in the multimode interference fiber (MMI). The environmental methane concentration is then detectable by detecting the wavelength shifts of the interference peaks in the resulted spectrum. Through simulations and experiments aimed at enhancing sensor sensitivity, we optimized three parameters within the sensor structure: the length of the Tapered Single-Mode Fiber (TSMF), the composite film thickness, and the TSMF taper diameter. The experimental results indicate that the sensor's sensitivity reaches a maximum of 0.231 nm%. Additionally, the sensor exhibits excellent structural stability and measurement repeatability. The response time is as short as 40 s, and the recovery time ranges between 3 and 5 min. The proposed multimode interferometric methane sensor based on the ZIF-8/PDMS composite film has great potential to support highly sensitive methane concentration detection in many applications.

摘要

提出了一种基于ZIF-8/PDMS复合膜的多模干涉甲烷传感器。其传感原理是,ZIF-8/PDMS复合膜吸附甲烷时,其折射率发生变化,导致在多模干涉光纤(MMI)中包层高阶模与基模耦合过程中产生可测量的光程差。通过检测所得光谱中干涉峰的波长偏移,即可检测环境中的甲烷浓度。通过旨在提高传感器灵敏度的模拟和实验,我们优化了传感器结构中的三个参数:锥形单模光纤(TSMF)的长度、复合膜厚度和TSMF锥形直径。实验结果表明,该传感器的灵敏度最高可达0.231 nm%。此外,该传感器具有优异的结构稳定性和测量重复性。响应时间短至40 s,恢复时间在3至5分钟之间。所提出的基于ZIF-8/PDMS复合膜的多模干涉甲烷传感器在许多应用中具有支持高灵敏度甲烷浓度检测的巨大潜力。

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