Integrated SU-8 photonic gas sensors based on PANI polymer devices: Comparison between metrological parameters

被引:14
|
作者
Airoudj, A. [1 ,2 ]
Beche, B. [3 ]
Debarnot, D. [2 ]
Gaviot, E. [1 ]
Poncin-Epaillard, F. [2 ]
机构
[1] Univ Maine, CNRS, UMR 6613, Acoust Lab, F-72085 Le Mans, France
[2] Univ Maine, CNRS, UMR 6120, Lab Polymeres, F-72085 Le Mans, France
[3] Univ Rennes, CNRS, UMR 6251, Inst Phys Rennes, F-35042 Rennes, France
关键词
Integrated photonics; Sensor components; Polyaniline; SU-8; polymer; Ammonia detection; OPTICAL AMMONIA SENSOR; PLASMA POLYMERIZATION; POLYANILINE COMPOSITE; SENSITIVE LAYER; WAVE-GUIDES; FILMS; ANILINE; DESIGN;
D O I
10.1016/j.optcom.2009.06.040
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
In this work. we have designed and developed three families of integrated photonic sensors for ammonia detection. These photonic sensors are integrated onto single-mode TE0-TM0 SU-8 polymer planar wave-guides and based on a polyaniline (PANI) sensitive polymer material. The first family relies on the deposit of a PANI-polymethyl methacrylate (PMMA) composite sensitive layer on a given SU-8 waveguide. The second family relies on a PMMA passive layer deposited on the SU-8 waveguide before applying the PANI sensitive layer on the PMMA passive layer. The third family takes advantage of a PANI layer deposited by plasma technique directly onto the SU-8 waveguide. The working principle of such sensors is based on the optical intensity modulation induced within the single-mode waveguide owing to the interaction between the evanescent field and the sensitive layer. The sensing proprieties of these integrated photonic sensors to ammonia gas at room temperature were characterized and the comparison between these different families of photonic sensors is presented. Experimental results show that the sensor based on new plasma-PANI as sensitive layer has the better metrological parameters. (C) 2009 Elsevier B.V. All rights reserved.
引用
收藏
页码:3839 / 3845
页数:7
相关论文
共 8 条
  • [1] Integrated Mach-Zehnder interferometer on SU-8 polymer for designing pressure sensors
    Pelletier, N
    Beche, B
    Tahani, N
    Camberlein, L
    Gaviot, E
    Goullet, A
    Landesman, JP
    Zyss, J
    [J]. 2005 IEEE SENSORS, VOLS 1 AND 2, 2005, : 640 - 643
  • [2] Integrated optical Mach-Zehnder on SU-8 polymer for designing thermal sensors
    Pelletier, N
    Bêche, B
    Camberlein, L
    Gaviot, E
    Giordani, N
    Zyss, J
    [J]. PROCEEDINGS OF THE IEEE SENSORS 2004, VOLS 1-3, 2004, : 868 - 871
  • [3] Integrated humidity sensor based on SU-8 polymer microdisk microresonator
    Eryurek, M.
    Tasdemir, Z.
    Karadag, Y.
    Anand, S.
    Kilinc, N.
    Alaca, B. E.
    Kiraz, A.
    [J]. SENSORS AND ACTUATORS B-CHEMICAL, 2017, 242 : 1115 - 1120
  • [4] Compact Microracetrack Resonator Devices Based on Small SU-8 Polymer Strip Waveguides
    Dai, Daoxin
    Yang, Bo
    Yang, Liu
    Sheng, Zhen
    He, Sailing
    [J]. IEEE PHOTONICS TECHNOLOGY LETTERS, 2009, 21 (1-4) : 254 - 256
  • [5] Refractive Index Modification of SU-8 Polymer Based Waveguide Via Fabrication Parameters
    Martham, Susan Kavita
    Nan, Khor Kang
    Shahimin, Mukhzeer Mohamad
    [J]. 2014 IEEE STUDENT CONFERENCE ON RESEARCH AND DEVELOPMENT (SCORED), 2014,
  • [6] PMMA to SU-8 bonding for polymer based lab-on-a-chip systems with integrated optics
    Bilenberg, B
    Nielsen , T
    Clausen, B
    Kristensen, A
    [J]. JOURNAL OF MICROMECHANICS AND MICROENGINEERING, 2004, 14 (06) : 814 - 818
  • [7] Single-mode rib optical waveguides on SOG/SU-8 polymer and integrated Mach-Zehnder for designing thermal sensors
    Pelletier, N.
    Beche, B.
    Gaviot, E.
    Camberlein, L.
    Grossard, N.
    Polet, F.
    Zyss, J.
    [J]. IEEE SENSORS JOURNAL, 2006, 6 (03) : 565 - 570
  • [8] Similarity between optical response kinetics of conducting polymer thin film based gas sensors and electrochromic devices
    Hu, HL
    Hechavarría, L
    Nicho, ME
    [J]. REVISTA MEXICANA DE FISICA, 2004, 50 (05) : 471 - 477