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A Sensitive Gold Nanoplasmonic SERS Quantitative Analysis Method for Sulfate in Serum Using Fullerene as Catalyst

机译:富勒烯作为催化剂的灵敏的金纳米等离子体SERS定量分析血清中硫酸盐的方法

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摘要

Fullerene exhibited strong catalysis of the redox reaction between HAuCl4 and trisodium citrate to form gold nanoplasmon with a strong surface-enhanced Raman scattering (SERS) effect at 1615 cm−1 in the presence of Vitoria blue B molecule probes. When fullerene increased, the SERS peak enhanced linearly due to formation of more AuNPs as substrate. Upon addition of Ba2+, Ba2+ ions adsorb on the fullerene surface to inhibit the catalysis of fullerene that caused the SERS peak decreasing. Analyte SO42− combined with Ba2+ to form stable BaSO4 precipitate to release free fullerene that the catalysis recovered, and the SERS intensity increased linearly. Thus, a new SERS quantitative analysis method was established for the detection of sulfate in serum samples, with a linear range of 0.03–3.4 μM.
机译:在维多利亚蓝B分子探针的存在下,富勒烯对HAuCl4和柠檬酸三钠之间的氧化还原反应具有很强的催化作用,从而形成金纳米等离子体激元,在1615 cm -1 时具有很强的表面增强拉曼散射(SERS)效应。 。当富勒烯增加时,由于形成更多的AuNP作为底物,SERS峰线性增加。加入Ba 2 + 后,Ba 2 + 离子吸附在富勒烯表面,抑制了富勒烯的催化作用,从而导致SERS峰降低。分析物SO4 2-与Ba 2 + 结合形成稳定的BaSO4沉淀,释放出游离的富勒烯,催化作用得以恢复,SERS强度呈线性增加。因此,建立了一种新的SERS定量分析方法,用于检测血清样品中的硫酸盐,线性范围为0.03–3.4μM。

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