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Colorimetric and paper-based detection of lead using PVA capped silver nanoparticles: Experimental and theoretical approach

机译:基于比色和纸张的铅检测使用PVA封端的银纳米粒子:实验和理论方法

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摘要

We report a plasmonic colorimetric sensing strategy using polyvinyl alcohol (PVA) modified silver nanoparticles (AgNPs) and paper-based analytical devices (PADs) for selective detection of lead (Pb). Method is based on the measurement of red shift of localized surface plasmon resonance (LSPR) absorption band of AgNPs/PVA in visible region after the addition of Pb(II) using UV-Vis spectrophotometry and color intensity of PADs was recorded with Smartphone followed by the processing in ImageJ software. The mechanism of color change and red shift (Delta lambda) of LSPR band from 410 nm to 550 nm is due to the interaction of Pb(II) ions towards the PVA through strong ion-dipole interaction perturbing the stability AgNPs which further directed the aggregation of particles. The density functional theory (DFT) using Gaussian (C.01) program assisted by experimental data was used to elucidate the plausible mechanism for selective detection of analyte. The calibration curve gave a good linearity in the range of 20-1000 mu gL(-1) with limit of detection (LOD) of 8 mu gL(-1) by colorimetry and 50-1000 mu gL(-1) with LOD value of 20 mu gL(-1) using PADs. In addition, the results obtained with UV-Vis and PADs were compared with ICP-AES for quantitative determination of Pb(II) in different water samples. The advantages of using AgNPs/PVA as plasmonic colorimetric probe and PADs found to be simple, low cost and selective for determination of lead from surface water and industrial waste water samples.
机译:我们报告了使用聚乙烯醇(PVA)改性银纳米颗粒(AGNP)和基于纸张的分析装置(焊盘)的等离子体上比色感测策略,用于选择性检测铅(Pb)。方法基于使用UV-Vis分光光度法的Pb(II)在可见区域中AgNPS / PVA在可见区域中AgNPS / PVA中的局部表面谐振(LSPR)吸收带的测量值,用智能手机记录焊盘的颜色强度。随后imagej软件中的处理。从410nm至550nm的LSPR带的颜色变化和红色移位(Delta Lambda)是通过扰动稳定性AgNP的强离子 - 偶极相互作用的Pb(II)离子对PVA的相互作用,这进一步指导了聚集颗粒。使用实验数据辅助的高斯(C.01)程序的密度泛函理论(DFT)用于阐明用于选择性检测分析物的合理机制。校准曲线在20-1000μmL(-1)的范围内具有良好的线性度,通过比色测量法为8 mu gl(-1)的检测(LOD)极限,具有led值的50-1000 mu gl(-1)使用垫20 mu gl(-1)。此外,用UV-VIS和垫获得的结果与ICP-AES进行比较,用于定量测定不同水样中Pb(II)的测定。使用AGNPS / PVA作为等离子体比色探针和垫的优点是简单,低成本和选择性,用于测定来自地表水和工业废水样品的铅。

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