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基于嵌入式声学谐振结构的柔性中空光纤光声气体传感器

Flexible Hollow Core Fiber Photoacoustic Gas Sensor Based on Embedded Acoustic Resonant Structure.

作者信息

Zhang Bo, Jiang Jiachen, Zhang Xian, Zhu Xiao-Song, Shi Yiwei

机构信息

School of Information Science and Technology, Fudan University, Shanghai 200438, China.

Zhongshan-Fudan Joint Innovation Center, Zhongshan 528400, Guangdong, China.

出版信息

Anal Chem. 2023 Aug 29;95(34):12761-12767. doi: 10.1021/acs.analchem.3c01476. Epub 2023 Aug 18.

Abstract

In this paper, we demonstrate a flexible leaky hollow core fiber (LHCF) photoacoustic (PA) gas sensor based on an embedded acoustic resonant structure. The sensor employs a part of a gas conduit as the buffer chamber to construct an equivalent T-type half-open PA cell. The LHCF is installed inside of the gas conduit and the LHCF is hence replaceable. Also, the flexibility of the LHCF and the gas conduit make the gas sensor flexible to reduce spatial size. The inner diameter and length of the LHCF are 1.6 mm and 70 mm, respectively. The inner diameter and length of the gas conduit are 4 mm and 210 mm, respectively. The total gas volume of the sensor is only ∼2.6 mL. Trace acetylene (CH) is selected as the target gas to evaluate the performance of the PA gas sensor. A near-infrared distributed feedback (DFB) laser is utilized to generate the PA signal, and an electrical micro-electro-mechanical system (MEMS) microphone is employed to extract the PA signal. The experimental results show that the minimum detection limit (MDL) can be as low as 21.1 ppb when the lock-in integration time is 200 s. And the normalized noise equivalent absorption coefficient (NNEA) is calculated to be 5.7 × 10·W/cm·Hz.

摘要

在本文中,我们展示了一种基于嵌入式声学谐振结构的柔性泄漏空心光纤(LHCF)光声(PA)气体传感器。该传感器采用气体导管的一部分作为缓冲室,以构建等效的T型半开放式PA池。LHCF安装在气体导管内部,因此LHCF是可更换的。此外,LHCF和气体导管的柔性使气体传感器具有灵活性,可减小空间尺寸。LHCF的内径和长度分别为1.6毫米和70毫米。气体导管的内径和长度分别为4毫米和210毫米。该传感器的总气体体积仅约为2.6毫升。选择痕量乙炔(CH)作为目标气体来评估PA气体传感器的性能。利用近红外分布反馈(DFB)激光器产生PA信号,并采用微机电系统(MEMS)电麦克风提取PA信号。实验结果表明,当锁相积分时间为200秒时,最低检测限(MDL)可低至21.1 ppb。计算得到的归一化噪声等效吸收系数(NNEA)为5.7×10·W/cm·Hz。

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