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Chalcogenide prism and graphene multilayer based surface plasmon resonance affinity biosensor for high performance

机译:基于硫族化物棱镜和石墨烯的多层表面等离子体共振亲和力生物传感器

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摘要

Surface plasmon resonance based affinity biosensor comprising of 2S2G (Ge_(20)Ga_5Sb_(10)S_(65)) chalcogenide prism, graphene-multilayer and gold as a plasmon active metal is proposed for sensing over a broad wavelength range in visible and near infrared regime. We have investigated and carried out detailed analysis to design high performance affinity biosensor by exploiting the unique optical properties of chalcogenide glass and graphene. The performance of the biosensor has been quantified in terms of sensitivity and detection accuracy. The sensitivity of proposed biosensor increases significantly due to the presence of graphene where as the detection accuracy increases by more than 100% because of high index chalcogenide glass as compared to silica glass. Also, the detection accuracy of the proposed sensor in near IR is 16 times more as compared to that in visible. Adequate values of crucial design parameters have been optimized to achieve the best possible sensing performance over a broad wavelength range.
机译:提出了一种基于表面等离振子共振的亲和生物传感器,该传感器由2S2G(Ge_(20)Ga_5Sb_(10)S_(65))硫族化物棱镜,石墨烯多层膜和金作为等离激元活性金属组成,可用于在可见光和近红外的宽波长范围内进行感应政权。我们已经研究并进行了详细的分析,以利用硫族化物玻璃和石墨烯的独特光学特性设计高性能亲和力生物传感器。生物传感器的性能已经根据灵敏度和检测精度进行了量化。所提出的生物传感器的灵敏度由于石墨烯的存在而显着增加,其中与二氧化硅玻璃相比,由于高折射率硫属化物玻璃而使检测精度提高了100%以上。此外,与可见光相比,拟议传感器在近红外光下的检测精度高出16倍。关键设计参数的适当值已得到优化,以在较宽的波长范围内实现最佳的感测性能。

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