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Propagating and Localised Plasmonic and Magneto-Plasmonic Transductors for Gas and Biosensing Applications

机译:气体和生物传感应用中的局域等离子和磁电偶传感器的传播和局域化

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摘要

Surface Plasmon Resonance (SPR) is known as a leading technology for label-free biosensing. It is based on the optical detection of refractive index changes occurring at a metal/dielectric interface upon a proper choice of the metal layer, its thickness as well as on the excitation light beam. Biological and chemical analysis are achieved by functionalizing the gold surface with surface bioreceptors and measuring the shift of corresponding optical signals when a biomolecular reaction occurs. In order to increase the sensing performances two strategies have been adopted: a proper combination of noble metal and ferromagnetic materials tailored on the nanoscale is used as novel transducer in SPR-based biosensor coupled with an external magnetic field; and a new 3D transductor consisting of silica nanowires decorated by gold nanoparticles have been realized to increase the performance of sensing devices In both case increasing biosensing performance have been demonstrated.
机译:表面等离子体共振(SPR)是无标签生物传感的领先技术。它基于对金属/介电界面发生的折射率变化的光学检测,该折射率发生在适当选择金属层,其厚度以及激发光束的情况下。通过使用表面生物受体对金表面进行功能化,并在发生生物分子反应时测量相应的光学信号的位移,可以进行生物学和化学分析。为了提高传感性能,采用了两种策略:在纳米级上定制的贵金属和铁磁材料的适当组合用作结合外部磁场的基于SPR的生物传感器中的新型传感器。并且已经实现了由金纳米颗粒修饰的由二氧化硅纳米线组成的新型3D换能器,以提高传感设备的性能。在两种情况下,都已证明了生物传感性能的提高。

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