• Infrared and Laser Engineering
  • Vol. 49, Issue 8, 20190576 (2020)
Jin Wang1, Xianwei Hao2, Jungang Dong3, Jijun Xiong1, and Yingping Hong1、*
Author Affiliations
  • 1Key Laboratory of Instrumentation Science and Dynamic Measurement, Ministry of Education, North University of China, Taiyuan 030051, China
  • 2Beijing Institute of Astronautical Systems Engineering, Beijing 100171, China
  • 3Beijing Capital Aerospace Machinery Co., Ltd. Beijing 100076, China
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    DOI: 10.3788/IRLA20190576 Cite this Article
    Jin Wang, Xianwei Hao, Jungang Dong, Jijun Xiong, Yingping Hong. Design of high precision photoionization detector[J]. Infrared and Laser Engineering, 2020, 49(8): 20190576 Copy Citation Text show less
    References

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    [2] Qi Zhou, Xu Zhang, Siming Li. Double-UV photoionization sensor with graphene oxide coated electrodes. Micronanoelectronic Technology, 56, 461-465+472(2019).

    [3] Yunsung Kang, Soonjae Pyo, Han-Il Jeong. Impact ionization induced by accelerated photoelectrons for wide-range and highly sensitive detection of volatile organic compounds at room temperature. ACS Applied Materials & Interfaces, 2019, 20491-20499(2019).

    [4] Min Liu, Wenlin Feng, Guojia Huang. Performance study of hydrogen sulfide gas sensor based on titanium dioxide coated no-core fiber. Infrared and Laser Engineering, 48, 0818003(2019).

    [5] Xiaobing Pang, Haijun Nan, Jinping Zhong. Low-cost photoionization sensors as detectors in GC×GC systems designed for ambient VOC measurements. The Science of the Total Environment, 664, 771-779(2019).

    [6] Zhou Qi, Zhang Sixiang, Zhang Xu, et al. Development of a novel micro photoionization detect f rapid volatile ganic compounds measurement[J]. Applied Bionics Biomechanics, 2018, 2018: 5651315.

    [7] Ye Weilin, Zhou Bo, Yu Hongzhi, et al. Inmotion moniting of atmospheric methane ethane using a infrared dualgas simultaneous detection sens[J]. Optics Precision Engineering, 2018, 26(8): 19381944. (in Chinese)

    [8] Jiwon Lee, Menglian Zhou, Hongbo Zhu. In situ calibration of micro-photoionization detectors in a multi-dimensional micro-gas chromatography system. The Analyst, 141, 4100-4107(2016).

    [9] Chunguang Li, Lei Dong, Yiding Wang. Compact mid-infrared trace gas detection system based on TDLAS and ICL. Optics and Precision Engineering, 26, 1855-1861(2018).

    [10] Xiaoxue Xing, Xianwei Wang, Hongwu Qin. CH4 detection based on near-infrared luminescence of PbSe quantum dots. Chinese Optics, 11, 662-668(2018).

    [11] Suresh M, Vasa Nilesh J, Agarwal Vivek, et al. Development of UVionization based trace differential mobility sens f acetone hexane[C]Engineering in Medicine Biology Society (EMBC), 2014 36th Annual International Conference of the IEEE, 2014.

    [12] Hajime Hori, Sumiyo Ishimatsu, Yukiko Fueta. Comparison of sensor characteristics of three real-time monitors for organic vapors. Journal of Occupational Health, 57, 13-19(2015).

    [13] Liu Yang. Research design on photo ionization detect[D]. Harbin : Harbin Engineering University, 2013. (in Chinese)

    Jin Wang, Xianwei Hao, Jungang Dong, Jijun Xiong, Yingping Hong. Design of high precision photoionization detector[J]. Infrared and Laser Engineering, 2020, 49(8): 20190576
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