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Systematic Study on the Sensitivity Enhancement in Graphene Plasmonic Sensors Based on Layer-by-Layer Self-Assembled Graphene Oxide Multi layers and Their Reduced Analogues

机译:基于层状自组装氧化石墨烯多层及其还原类似物的石墨烯等离子体传感器灵敏度增强的系统研究

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摘要

The use of graphene in conventional plasmonic devices was suggested by several theoretic research studies. However, the existing theoretic studies are not consistent with one another and the experimental studies are still at the initial stage. To reveal the role of graphenes on the plasmonic sensors, we deposited graphene oxide (GO) and reduced graphene oxide (rGO) thin films on Au films and their refractive index (RI) sensitivity was compared for the first time in SPR-based sensors. The deposition of GO bilayers with number of deposition L from 1 to 5 was carried out by alternative dipping of Au substrate in positively- and negatively charged GO solutions. The fabrication of layer-by-layer self-assembly of the graphene films was monitored in terms of the SPR angle shift. GO-deposited Au film was treated with hydrazine to reduce the GO. For the rGO-Au sample, 1 bilayer sample showed a higher RI sensitivity than bare Au film, whereas increasing the rGO film from 2 to 5 layers reduced the RI sensitivity. In the case of GO-deposited Au film, the 3 bilayer sample showed the highest sensitivity. The biomolecular sensing was also performed for the graphene multilayer systems using BSA and anti-BSA antibody.
机译:多项理论研究表明,石墨烯可用于常规等离子设备中。但是,现有的理论研究并不一致,实验研究仍处于起步阶段。为了揭示石墨烯在等离子体传感器上的作用,我们在Au膜上沉积了氧化石墨烯(GO)和还原的氧化石墨烯(rGO)薄膜,并首次在基于SPR的传感器中比较了它们的折射率(RI)灵敏度。通过将Au基板交替浸入带正电和带负电的GO溶液中,进行沉积L数为1至5的GO双层沉积。根据SPR角位移监测石墨烯膜的逐层自组装的制造。用肼处理GO沉积的Au膜以还原GO。对于rGO-Au样品,1个双层样品显示的RI灵敏度高于裸金膜,而将rGO膜从2层增加到5层会降低RI灵敏度。对于GO沉积的Au膜,3层双层样品显示出最高的灵敏度。还使用BSA和抗BSA抗体对石墨烯多层系统进行了生物分子传感。

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