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首页> 外文期刊>ACS applied materials & interfaces >Surface-Enhanced Infrared Absorption Spectroscopic Chalcogenide Waveguide Sensor Using a Silver Island Film
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Surface-Enhanced Infrared Absorption Spectroscopic Chalcogenide Waveguide Sensor Using a Silver Island Film

机译:使用银岛薄膜的表面增强的红外吸收光谱硫代硫化物传感器

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摘要

A surface-enhanced infrared absorption spectroscopic chalcogenide waveguide sensor based on the silver island film was proposed for the first time to enhance the sensing performance in both liquid and gas phases. The chalcogenide waveguide sensor was fabricated by the lift-off and oblique angle deposition methods. The surface morphology of the silver island film with different thicknesses was characterized. The absorption of ethanol (liquid) at a wavelength of 1654 nm and that of methane (gas) at 3291 nm were measured using the fabricated chalcogenide waveguide sensor. The chalcogenide waveguide sensor integrated with the 1.8 nm-thick silver island film revealed the best sensing performance. With an acceptable increased waveguide loss resulting from the fabrication of the film, the absorbance enhancement factors for ethanol and methane were experimentally obtained to be >1.5 and >2.3, respectively. The 1σ limit of detection of methane for the sensor integrated with the 1.8 nm-thick silver island film was ~4.11% for an averaging time of 0.2 s. The mathematic relation between the absorbance enhancement factor and the waveguide loss was derived for sensing performance improvement. Also, the proposed rectangular waveguide sensor provides an idea for the design of a sensor-on-a-chip instead of other waveguide sensors with a high requirement of fabrication accuracy, for example, a slot waveguide or a photonic crystal waveguide.
机译:首次提出了一种基于银岛薄膜的表面增强红外吸收光谱硫系波导传感器,以提高其在液相和气相的传感性能。采用剥离法和斜角沉积法制作了硫系波导传感器。对不同厚度银岛膜的表面形貌进行了表征。利用自制的硫系波导传感器测量了乙醇(液体)在1654 nm波长下的吸收和甲烷(气体)在3291 nm波长下的吸收。硫系波导传感器与1.8nm厚的银岛膜集成,显示出最佳的传感性能。由于薄膜的制备,波导损耗增加到了可以接受的程度,实验得出乙醇和甲烷的吸收增强因子分别大于1.5和>2.3。与1.8nm厚银岛膜集成的传感器在0.2s的平均时间内,甲烷的1σ检测限为~4.11%。为了提高传感性能,推导了吸收增强因子与波导损耗之间的数学关系。此外,所提出的矩形波导传感器为芯片上传感器的设计提供了一种思路,而不是其他对制造精度要求很高的波导传感器,例如狭缝波导或光子晶体波导。

著录项

  • 来源
    《ACS applied materials & interfaces 》 |2021年第27期| 共9页
  • 作者单位

    State Key Laboratory of Integrated Optoelectronics College of Electronic Science and Engineering Jilin University;

    State Key Laboratory of Integrated Optoelectronics College of Electronic Science and Engineering Jilin University;

    State Key Laboratory of Integrated Optoelectronics College of Electronic Science and Engineering Jilin University;

    State Key Laboratory of Integrated Optoelectronics College of Electronic Science and Engineering Jilin University;

    State Key Laboratory of Integrated Optoelectronics College of Electronic Science and Engineering Jilin University;

    State Key Laboratory of Integrated Optoelectronics College of Electronic Science and Engineering Jilin University;

    State Key Laboratory of Luminescence and Applications Changchun Institute of Optics Fine Mechanics and Physics Chinese Academy of Sciences;

    State Key Laboratory of Integrated Optoelectronics College of Electronic Science and Engineering Jilin University;

    State Key Laboratory of Integrated Optoelectronics College of Electronic Science and Engineering Jilin University;

    Department of Electrical and Computer Engineering Rice University;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业 ;
  • 关键词

    surface-enhanced infrared absorption spectroscopy; chalcogenide waveguide; waveguide sensor; silver island film; gas detection; liquid detection;

    机译:表面增强红外吸收光谱;硫系波导;波导传感器;银岛电影;气体检测;液体检测;

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