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Quantification of arsenic(III) in aqueous media using a novel hybrid platform comprised of radially porous silica particles and a gold thin film

机译:使用由径向多孔二氧化硅颗粒和金薄膜组成的新型混合平台对水性介质中的砷(III)进行定量

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摘要

The use of novel radially porous silica particles and gold thin film hybrid-based spectroscopy for the sensitive and anion-selective detection of As(III) is described. The method is based on the selective formation of electrostatic complexes between As(III) and an amine functionality on the porous silica particles and the effect of this on changes in the surface plasmon resonance (SPR) profiles of the gold thin film. Since silica particles have radially oriented mesopores, the sizes of which gradually increase from the center to the outer surface of the particle, they provide very large surface area, and permit target analytes to easily access active receptors within the pores. Thus, the amine-functionalized silica particles contain much higher concentration As(III) receptors than conventional porous nanoparticles or a flat surface, which results in a lower detection limit. In addition, due to the surface properties of silica as a dielectric spacing layer, it allows the sensing platform to be more sensitive and stable. The SPR properties of the resulting selectively formed complexes are altered, leading to significant changes in SPR reflectance (△R) near the SPR angle. The limit of detection of the method was determined to be 1.0 nM, which is ca. 80 times more sensitive than the U.S. EPA regulation level (10 μg L~(-1) ≈ 130 nM). The response is essentially linear in the concentration range of 10-600 nM on a semi-log scale. The method also shows good selectivity for As(III) in the presence of H2PO4~-, SO4~(2-), NO3~-, and Cl~- and is feasible for use in the analysis of tap (drinking) water; therefore, it would be applicable for use in environmental and biological monitoring.
机译:描述了使用新颖的径向多孔二氧化硅颗粒和金薄膜混合基光谱技术对As(III)进行灵敏和阴离子选择性检测。该方法基于在多孔二氧化硅颗粒上As(III)和胺官能团之间选择性形成静电配合物,以及这种相互作用对金薄膜表面等离振子共振(SPR)轮廓变化的影响。由于二氧化硅颗粒具有径向取向的中孔,其尺寸从颗粒的中心到外表面逐渐增加,因此它们提供了非常大的表面积,并允许目标分析物轻松进入孔内的活性受体。因此,胺官能化的二氧化硅颗粒包含比常规多孔纳米颗粒或平坦表面高得多的浓度的As(III)受体,这导致较低的检测极限。另外,由于二氧化硅作为介电间隔层的表面特性,它使传感平台更加灵敏和稳定。所形成的选择性形成的配合物的SPR性质被改变,导致在SPR角附近的SPR反射率(△R)发生显着变化。该方法的检测下限确定为1.0 nM,约为。灵敏度是美国EPA规定水平(10μgL〜(-1)≈130 nM)的80倍。在半对数刻度上,在10-600 nM的浓度范围内,响应基本上是线性的。该方法在H2PO4〜-,SO4〜(2-),NO3-〜和Cl〜-的存在下对As(III)也具有良好的选择性,可用于自来水的分析。因此,它将适用于环境和生物监测。

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