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High Sensitive Biosensors Based on the Coupling Between Surface Plasmon Polaritons on Titanium Nitride and a Planar Waveguide Mode

机译:基于氮化钛表面等离激元极化子与平面波导模式耦合的高灵敏度生物传感器

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摘要

High sensitivity biosensors based on the coupling of surface plasmon polaritons on titanium nitride (TiN) and a planar waveguide mode were bui they were proved by sensing three different media: air, water and dried egg white; sensors described here could be useful for sensing materials with a refractive index between 1.0 and 1.6; in particular, materials of biological interest with a refractive index in the range 1.3–1.6, like those containing biotin and/or streptavidin. They were built by depositing Nb O /SiO /TiN multilayer structures on the flat surface of D-shaped sapphire prisms by using the dc magnetron sputtering technique. Attenuated total reflection (ATR) experiments in the Kretschmann configuration were accomplished for the air/TiN/Prism and S/Nb O /SiO /TiN/Prism structures, S being the sample or sensing medium. ATR spectra for plasmons at the TiN/air interface showed a broad absorption band for angles of incidence between 36 and 85°, with full width at half maximum (FWHM) of approximately 40°. For the S/Nb O /SiO /TiN/Prism structures, ATR spectra showed a sharp reflectivity peak, within the broad plasmonic absorption band, which was associated with Fano resonances. The angular position and FWHM of the Fano resonances strongly depend on the refractive index of the sensing medium. ATR spectra were fitted by using the transfer-matrix method. Additionally, we found that angular sensitivity and figure of merit increase with increasing the refractive index of the sensing medium.
机译:建立了基于氮化钛(TiN)上的表面等离激元极化子耦合和平面波导模式的高灵敏度生物传感器;通过检测三种不同的介质可以证明它们:空气,水和干蛋清。此处描述的传感器可用于感测折射率介于1.0和1.6之间的材料;特别是折射率在1.3-1.6范围内的具有生物学意义的材料,例如含有生物素和/或链霉亲和素的材料。它们是通过使用直流磁控溅射技术在D形蓝宝石棱镜的平面上沉积Nb O / SiO / TiN多层结构而构建的。对于空气/ TiN / Prism和S / Nb O / SiO / TiN / Prism结构,采用Kretschmann配置的衰减全反射(ATR)实验,S为样品或传感介质。 TiN /空气界面处的等离激元的ATR光谱显示,入射角在36至85°之间时具有较宽的吸收带,半峰全宽(FWHM)约为40°。对于S / Nb O / SiO / TiN / Prism结构,ATR光谱在宽等离子体吸收带内显示了一个尖锐的反射峰,这与Fano共振有关。 Fano共振的角位置和FWHM很大程度上取决于感应介质的折射率。通过使用转移矩阵法拟合ATR光谱。此外,我们发现,角灵敏度和品质因数随传感介质折射率的增加而增加。

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