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    • 4. 发明申请
    • Self-Referencing Localized Plasmon Resonance Sensing Device and System Thereof
    • 自引用本地等离子体共振感测装置及其系统
    • US20160169797A1
    • 2016-06-16
    • US15048828
    • 2016-02-19
    • National Chung Cheng University
    • Lai-Kwan CHAUChin-Wei WUChang-Yue CHIANGChien-Hsing CHEN
    • G01N21/552
    • G01N21/554G01N2201/088
    • A self-referencing localized plasmon resonance sensing device and a system thereof are disclosed. The reference optical waveguide element is modified with a noble metal nanoparticle layer. The sensing optical waveguide element is modified with a noble metal nanoparticle layer, which is further modified with a recognition unit. The incident light is guided into the reference and the sensing optical waveguide elements to respectively generate localized plasmon resonance sensor signals. The reference and the sensing optical waveguide elements respectively have a calibration slope. The processor utilizes the calibration slopes to regulate the second difference generated by detecting with the sensing optical waveguide element. The processor utilizes a difference between the first difference, which is generated by detecting with the reference optical waveguide element, and the regulated second difference to obtain a sensor response.
    • 公开了一种自参考的局部等离子体共振感测装置及其系统。 参考光波导元件用贵金属纳米颗粒层进行改性。 传感光波导元件用贵金属纳米粒子层进行改性,该金属纳米粒子层被识别单元进一步修饰。 入射光被引导到参考和感测光波导元件中以分别产生局部等离子体共振传感器信号。 参考和感测光波导元件分别具有校准斜率。 处理器利用校准斜率来调节由感测光波导元件检测产生的第二差异。 处理器利用通过与参考光波导元件检测而产生的第一差异和调节的第二差值之间的差异来获得传感器响应。