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Optical Fiber Sensors Based on Local Surface Plasmon Resonance Modified with Silver Nanoparticles

机译:基于银纳米粒子改性局部表面等离子体共振的光纤传感器

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Silver nanoparticles were prepared adopting microwave synthesizing method and coated on the optical fiber lateral utilizing a self-assembling technology. An optical fiber sensor based on localized surface plasmon resonant (LSPR) was developed. UV-vis extinction spectrum of the optical fiber modified nanoparticles was investigated with a fiber spectrometer. The results show that LSPR extinction peak locates at 426.57 nm in pure water. LSPR peak produces a red shift with the increase of the refractive index of sample solution. The peak wavelength bears a linear relationship to the refractive index of sucrose solution over a range of 6%-30% (mass percentage), with a sensitivity of 178 nm/RIU. Although silver nanoparticles aggregated fractionally, the optical sensor still can distinguish the difference of dielectric constant of the sample solution. But the sensitivity is lowered to 120 nm/RIU. And, there is a linear relationship between the extinction peak intensity of LSPR and the refractive index of the solution, with a sensitivity of 1.612 AU/RIU.
机译:制备银纳米粒子采用微波合成方法并涂覆在利用自组装技术的光纤横向上。开发了一种基于局部表面等离子体谐振(LSPR)的光纤传感器。用纤维光谱仪研究光纤改性纳米颗粒的UV-Vis消光谱。结果表明,LSPR消光峰位于纯水中的426.57nm。 LSPR峰值随着样品溶液折射率的增加产生红移。峰值波长与蔗糖溶液的折射率相比,在6%-30%(质量百分比)的范围内,敏感性为178nm / riu。虽然银纳米颗粒分馏聚集,但光学传感器仍然可以区分样品溶液的介电常数的差异。但敏感度降至120 nm / riu。并且,LSPR的消光峰强度与溶液的折射率之间存在线性关系,灵敏度为1.612 AU / RIU。

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