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A sensitive LSPR sensor based on glutathione-functionalized gold nanoparticles on a substrate for the detection of Pb2+ ions

机译:基于谷胱甘肽功能化金纳米粒子的基质上灵敏的LSPR传感器,用于检测Pb 2 + 离子

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A plasmonic probe based on gold nanoparticles (AuNPs) on a solid substrate for the detection of Pb2+ was developed. The AuNPs were self-assembled on a transparent indium tin oxide (ITO) glass using organic PDDA linkers and then calcined to obtain pure AuNPs on the ITO surface (ITO/AuNPs). The probe was fabricated by functionalizing glutathione on the gold surface (ITO/AuNPs/GSH). The strong chelation of Pb2+ with GSH resulted in the red-shift of the localized surface plasmon resonance (LSPR) peak due to the change in the refractive index of the environment. The red-shift of the peak wavelength was linearly proportional to the concentration of Pb2+ from 10?10 to 10?5 M with a detection limit of 5 × 10?11 M. The sensitivity of the as-prepared sensor was much higher than that of the sensors prepared by the methods based on aggregation strategy. This method offered a new strategy for the determination of Pb2+ with satisfactory results.
机译:开发了一种基于金纳米颗粒(AuNPs)的等离子探针,该探针位于固体基质上,用于检测Pb 2 + 。使用有机PDDA接头将AuNPs自组装在透明的铟锡氧化物(ITO)玻璃上,然后煅烧以获得ITO表面上的纯AuNPs(ITO / AuNPs)。该探针是通过在金表面(ITO / AuNPs / GSH)上官能化谷胱甘肽而制成的。 Pb 2 + 与GSH的强螯合由于环境折射率的变化而导致局部表面等离振子共振(LSPR)峰发生红移。峰值波长的红移与Pb 2 + 从10 ?10 的浓度成线性比例到10 ?5 M,检测极限为5×10 ?11 M。as的灵敏度制备的传感器远高于通过基于聚集策略的方法制备的传感器。该方法为测定Pb 2 + 提供了一种新的方法,结果令人满意。

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