Li Lixia, Liang Yuzhang, Guang Jianye, Cui Wenli, Zhang Xinpu, Masson Jean-Francois, Peng Wei
Opt Express. 2017 Oct 30;25(22):26950-26957. doi: 10.1364/OE.25.026950.
We present a dual-resonance fiber surface plasmon resonance (SPR) sensor for biological analysis. The sensing element was fabricated by sequentially sputtering layers of indium tin oxide (ITO) (100 nm thickness) and Au (35 nm thickness) on the surface of an optical fiber. The refractive index dispersion effect of ITO material led to resonances in the near infrared and visible wavelength regions. The refractive index of ITO is larger than the optical fiber in visible spectral area (400 to 733nm), such that the structure is a typical Kretschmann configuration surface plasmon resonance sensor. However, an Otto configuration is observed in the near infrared area (NIR) due to the ITO refractive index being smaller than the fiber core. We characterized the sensor performance by measuring bulk refractive index (RI) sensitivity in the two configurations, which were 1345 nm/RIU in the Kretschmann configuration and 1100 nm/RIU in the Otto configuration. In addition, this sensor was applied for real-time and label-free monitoring of the IgG/anti-IgG biomolecular interaction. As a robust and ultra-compact SPR sensor, which possesses wide detection range and is highly sensitive, this fiber SPR sensor can be applied for real-time biological analysis and monitoring.
我们展示了一种用于生物分析的双共振光纤表面等离子体共振(SPR)传感器。传感元件是通过在光纤表面依次溅射氧化铟锡(ITO)层(厚度100纳米)和金层(厚度35纳米)制成的。ITO材料的折射率色散效应导致在近红外和可见光波长区域产生共振。在可见光谱区域(400至733纳米),ITO的折射率大于光纤,因此该结构是典型的Kretschmann配置表面等离子体共振传感器。然而,由于ITO折射率小于光纤芯,在近红外区域(NIR)观察到Otto配置。我们通过测量两种配置下的体折射率(RI)灵敏度来表征传感器性能,在Kretschmann配置下为1345纳米/RIU,在Otto配置下为1100纳米/RIU。此外,该传感器用于实时无标记监测IgG/抗IgG生物分子相互作用。作为一种坚固且超紧凑的SPR传感器,具有宽检测范围且高度灵敏,这种光纤SPR传感器可用于实时生物分析和监测。