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Synthesis and sensing application of glutathione-capped platinum nanoparticles

机译:谷胱甘肽包覆的铂纳米粒子的合成及传感应用

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摘要

Glutathione (GSH) is chosen as a nucleation template to synthesize Pt-based peroxidase nanomimetics ranging from 2.3 to 3.6 nm, of which the surface charge states are greatly associated with the molar ratio of [K2PtCl4]/[GSH]. GSH-Pt3.3 consisting of 67% Pt-0 and 33% Pt2+ possesses the highest peroxidase-like activity, while GSH-Pt3.6 comprising 82% Pt-0 and 18% Pt2+ exhibits the most efficient radical scavenging capability. Owing to the Hg2+-induced inhibition of peroxidase mimicking activities, a series of Pt-based nanozymes are employed to explore colorimetric assays of Hg2+ in aqueous samples with ultrahigh sensitivity. The limit of detection (LOD) can reach 0.25 nM by using GSH-Pt with an average diameter of 3.6 nm. GSH-Pt is a promising candidate for colorimetric assay of Hg2+ in both drinking water and biological fluid.
机译:选择谷胱甘肽(GSH)作为成核模板,以合成2.3至3.6 nm范围内基于Pt的过氧化物酶纳米模拟物,其表面电荷状态与[K2PtCl4] / [GSH]的摩尔比密切相关。由67%Pt-0和33%Pt2 +组成的GSH-Pt3.3具有最高的过氧化物酶样活性,而由82%Pt-0和18%Pt2 +组成的GSH-Pt3.6具有最有效的自由基清除能力。由于Hg2 +诱导的过氧化物酶模拟活性的抑制作用,一系列基于Pt的纳米酶被用于以超高灵敏度探索比色测定水中样品中Hg2 +的方法。通过使用平均直径为3.6 nm的GSH-Pt,检测限(LOD)可以达到0.25 nM。 GSH-Pt是饮用水和生物液中Hg2 +的比色测定的有希望的候选者。

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