Surface plasmon resonance sensor based on a planar polychromatic OLED light source

被引:2
|
作者
Frischeisen, Joerg [1 ]
Reinke, Nils [1 ]
Ostermayr, Cornelia [1 ]
Neumann, Juergen [1 ]
Nowy, Stefan [1 ]
Bruetting, Wolfgang [1 ]
机构
[1] Univ Augsburg, Inst Phys, D-86159 Augsburg, Germany
来源
OPTICAL SENSORS 2008 | 2008年 / 7003卷
关键词
surface plasmon resonance; optical sensor; chemical sensor; organic light emitting diode;
D O I
10.1117/12.780522
中图分类号
TP7 [遥感技术];
学科分类号
081102 ; 0816 ; 081602 ; 083002 ; 1404 ;
摘要
We present a novel surface plasmon resonance (SPR) sensor based on an integrated planar and polychromatic light source. The sensor comprises an organic light emitting diode (OLED) and a metallic sensing layer located on opposite sides of a glass prism. We successfully fabricated and tested prototype sensors based on this approach by the use of different prism geometries and OLEDs with blue, green and red emission color. We investigated the angular and wavelength dependent SPR dispersion relation for sensing layers consisting of silver and gold of different thicknesses in contact with air. Further on we demonstrated the sensor function by real time monitoring of temperature changes inside an adjacent water reservoir as well as by recording the dissolving process of sodium chloride in water. This shows that the configuration can in principle be used for bio-sensing applications. The presented technique offers the advantage that there is no necessity to couple light from external bulky sources such as lasers or halogen lamps into the sensing device which makes it particularly interesting for miniaturization. The presented SPR configuration can be monolithically integrated oil one common substrate. Furthermore it is compatible with the planar glass light pipe platform for SPR sensing and the two-color approach for the determination of the thickness and the dielectric constant of thin films in a single experiment.
引用
收藏
页数:11
相关论文
共 50 条
  • [21] Light Humidity Sensor of Surface Plasmon Resonance by Symmetric Metal Film
    Zhu, Jun
    Xu, Zhengjie
    Xu, Wenju
    Fu, Deli
    Song, Shuxiang
    PLASMONICS, 2018, 13 (02) : 681 - 686
  • [22] Extraction Efficiency Enhancement of an OLED using Surface Plasmon Resonance
    Nien, Shou-Yu
    Chiu, Nan-Fu
    Tsai, Yao-Chou
    Lin, Chii-Wann
    Liu, Kou-Chen
    Lee, Jiun-Haw
    AOE 2007: ASIA OPTICAL FIBER COMMUNICATION & OPTOELECTRONIC EXPOSITION & CONFERENCE, CONFERENCE PROCEEDINGS, 2008, : 239 - +
  • [23] Planar segmentation for curved surface plasmon resonance
    Lee, Hyunwoong
    Kang, Kyungnam
    Kim, Donghyun
    PLASMONICS IN BIOLOGY AND MEDICINE XIX, 2022, 11978
  • [24] Planar substrate surface plasmon resonance probe
    Johnston, KS
    Chinowsky, TM
    Yee, SS
    CHEMICAL, BIOCHEMICAL, AND ENVIRONMENTAL FIBER SENSORS VIII, 1996, 2836 : 178 - 185
  • [25] Studies on surface plasmon resonance sensor
    Zhao, XJ
    Wang, Z
    Xu, HY
    Liang, F
    Zhang, HQ
    Jin, QH
    CHEMICAL JOURNAL OF CHINESE UNIVERSITIES-CHINESE, 1998, 19 (08): : 1214 - 1218
  • [26] A differential surface plasmon resonance sensor
    Graham, David J. L.
    Watkins, Lionel R.
    SENSORS AND ACTUATORS B-CHEMICAL, 2011, 159 (01) : 33 - 38
  • [27] Simulation of Surface Plasmon Resonance Sensor
    Hong, Ley Hood
    Yahaya, Asiah
    Munajat, Yusof
    PHYSICS AND MATERIALS SYMPOSIUM: INTERNATIONAL CONFERENCE ON APPLIED SCIENCES AND INDUSTRIAL TECHNOLOGY (ICASIT2015), 2015, 1674
  • [28] LED based fiber optic surface plasmon resonance sensor
    Singh, Sarika
    Verma, R. K.
    Gupta, B. D.
    OPTICAL AND QUANTUM ELECTRONICS, 2010, 42 (01) : 15 - 28
  • [29] Design of a Surface Plasmon Resonance Sensor Based on Grating Connection
    Zhu, Jun
    Qin, Liuli
    Song, Shuxiang
    Zhong, Junwen
    Lin, Siyuan
    PHOTONIC SENSORS, 2015, 5 (02) : 159 - 165
  • [30] A flexible nanostructured multimodal sensor based on surface plasmon resonance
    Peng, Wang
    Pan, Xin
    Yu, Jia
    Liao, Linyi
    OPTICS COMMUNICATIONS, 2024, 571