中国激光, 2019, 46 (12): 1210001, 网络出版: 2019-12-02   

基于飞秒激光微加工的Pt-WO3膜光纤氢气传感器 下载: 1133次

Fiber Hydrogen Sensor Coated with Pt-WO3 Film Based on Femtosecond Laser Micro-processing
作者单位
1 湖北文理学院机械工程学院, 湖北 襄阳 441053
2 武汉理工大学光纤传感技术国家工程实验室, 湖北 武汉 430070
引用该论文

周贤, 杨沫, 张文, 周飞, 戴玉堂. 基于飞秒激光微加工的Pt-WO3膜光纤氢气传感器[J]. 中国激光, 2019, 46(12): 1210001.

Xian Zhou, Mo Yang, Wen Zhang, Fei Zhou, Yutang Dai. Fiber Hydrogen Sensor Coated with Pt-WO3 Film Based on Femtosecond Laser Micro-processing[J]. Chinese Journal of Lasers, 2019, 46(12): 1210001.

参考文献

[1] AfzalA, CioffiN, SabbatiniL, et al. NOx sensors based on semiconducting metal oxide nanostructures: progress and perspectives[J].Sensors and Actuators B:Chemical, 2012, 171/172: 25- 42.

[2] Ramgir N S, Goyal C P, Sharma P K, et al. Selective H2S sensing characteristics of CuO modified WO3 thin films[J]. Sensors and Actuators B: Chemical, 2013, 188: 525-532.

[3] Dai J X, Peng W, Wang G P, et al. Ultra-high sensitive optical fiber hydrogen sensor using self-referenced demodulation method and WO3-Pd2Pt-Pt composite film[J]. Optics Express, 2017, 25(3): 2009-2015.

[4] Yamaguchi Y, Imamura S, Nishio K, et al. Influence of temperature and humidity on the electrical sensing of Pt/WO3 thin film hydrogen gas sensor[J]. Journal of the Ceramic Society of Japan, 2016, 124(6): 629-633.

[5] Esfandiar A, Irajizad A, Akhavan O, et al. Pd-WO3/reduced graphene oxide hierarchical nanostructures as efficient hydrogen gas sensors[J]. International Journal of Hydrogen Energy, 2014, 39(15): 8169-8179.

[6] Caucheteur C, Debliquy M, Lahem D, et al. Hybrid fiber gratings coated with a catalytic sensitive layer for hydrogen sensing in air[J]. Optics Express, 2008, 16(21): 16854-16859.

[7] Dai J X, Yang M H, Yang Z, et al. Performance of fiber Bragg grating hydrogen sensor coated with Pt-loaded WO3 coating[J]. Sensors and Actuators B: Chemical, 2014, 190: 657-663.

[8] 廖常锐, 何俊, 王义平. 飞秒激光制备光纤布拉格光栅高温传感器研究[J]. 光学学报, 2018, 38(3): 0328009.

    Liao C R, He J, Wang Y P. Study on high temperature sensors based on fiber Bragg gratings fabricated by femtosecond laser[J]. Acta Optica Sinica, 2018, 38(3): 0328009.

[9] 胡文锦, 许兵, 史杨, 等. 飞秒激光制备高敏感度流量传感器[J]. 中国激光, 2018, 45(9): 0902001.

    Hu W J, Xu B, Shi Y, et al. Flow sensor with high sensitivity fabricated by femtosecond laser[J]. Chinese Journal of Lasers, 2018, 45(9): 0902001.

[10] 曹后俊, 司金海, 陈涛, 等. 飞秒激光制备异质光纤光栅的温度应变双参数传感器[J]. 中国激光, 2018, 45(7): 0702009.

    Cao H J, Si J H, Chen T, et al. Temperature and strain dual-parameter heterogeneous fiber Bragg grating sensor made by femtosecond laser[J]. Chinese Journal of Lasers, 2018, 45(7): 0702009.

[11] Okazaki S, Nakagawa H, Asakura S, et al. Sensing characteristics of an optical fiber sensor for hydrogen leak[J]. Sensors and Actuators B: Chemical, 2003, 93(1/2/3): 142-147.

[12] Song H, Chen Y P, Zhang G, et al. Optical fiber hydrogen sensor based on an annealing-stimulated Pd-Y thin film[J]. Sensors and Actuators B: Chemical, 2015, 216: 11-16.

[13] Silva S, Coelho L, Almeida J M, et al. H2 sensing based on a Pd-coated tapered-FBG fabricated by DUV femtosecond laser technique[J]. IEEE Photonics Technology Letters, 2013, 25(4): 401-403.

[14] Dai J X, Yang M H, Yu X, et al. Greatly etched fiber Bragg grating hydrogen sensor with Pd/Ni composite film as sensing material[J]. Sensors and Actuators B: Chemical, 2012, 174: 253-257.

[15] Zhou X, Dai Y T, Zou M, et al. FBG hydrogen sensor based on spiral microstructure ablated by femtosecond laser[J]. Sensors and Actuators B: Chemical, 2016, 236: 392-398.

[16] 曹玉璋. 传热学[M]. 北京: 北京航空航天大学出版社, 2001.

    Cao YZ. Heat transfer theory[M]. Beijing: Beihang University Press, 2001.

[17] 戴树森. 可靠性试验及其统计分析[M]. 北京: 国防工业出版社, 1984.

    Dai SS. Reliability tests and statistical analysis[M]. Beijing: National Defense Industry Press, 1984.

[18] Appel C, Mantzaras J, Schaeren R, et al. Catalytic combustion of hydrogen-air mixtures over platinum: validation of hetero/homogeneous chemical reaction schemes[J]. Clean Air: International Journal on Energy for a Clean Environment, 2004, 5(1): 21-44.

[19] Zhong X X, Yang M H, Huang C J, et al. Water photolysis effect on the long-term stability of a fiber optic hydrogen sensor with Pt/WO3[J]. Scientific Reports, 2016, 6: 39160.

周贤, 杨沫, 张文, 周飞, 戴玉堂. 基于飞秒激光微加工的Pt-WO3膜光纤氢气传感器[J]. 中国激光, 2019, 46(12): 1210001. Xian Zhou, Mo Yang, Wen Zhang, Fei Zhou, Yutang Dai. Fiber Hydrogen Sensor Coated with Pt-WO3 Film Based on Femtosecond Laser Micro-processing[J]. Chinese Journal of Lasers, 2019, 46(12): 1210001.

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