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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Colorimetric determination of F-, Br- and I- ions by Ehrlich's bio-reagent oxidation over enzyme mimic like gold nanoparticles: Peroxidase-like activity and multivariate optimization
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Colorimetric determination of F-, Br- and I- ions by Ehrlich's bio-reagent oxidation over enzyme mimic like gold nanoparticles: Peroxidase-like activity and multivariate optimization

机译:用酶的生物试剂氧化在酶模仿等金纳米粒子上的比色测定F-,BR-和IIENT中:过氧化物酶样活性和多变量优化

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摘要

Citrate and polyvinyl alcohol capped gold nanoparticles (PVA-GNPs) were synthesized via chemical reduction technique and fully characterized by DLS, SEM, EDS, XRD, UV-Vis and FT-IR analysis. A simple and practical colorimetric sensor based on red-ox reaction of p-dimethylaminobenzaldehyde (DABA) as ehrlich's bioreagent and Au(III) with H2O2 on PVA-GNPs mimic catalyst with enzyme-like activity, has been fabricated for determination of F-, Br- and I- halide anions. Prepared PVA-GNPs, can simultaneously catalyze the disintegration of H2O2, that used to reduce Au(III) ions into co-doped Au-NPs and oxidation of p-dimethylaminobenzaldehyde ehrlich's bio-reagent while in the presence of halide ions Au-X complex can be formed and improved sensor selectivity. Halide ions (F-, Br- and I-) effectively diminishes the catalytic activity of GNPs to disintegrate oxygenated water by the interaction among Au+ and Au-0 and suppressing oxidation of p-dimethylaminobenzaldehyde ehrlich's bio-reagent. In this system which contains PVA-GNPs, H2O2, p-dimethylaminobenzaldehyde ehrlich's bio-reagent, and Au(III), increasing the halide ions (F , Br and 1 ) concentration show color changes from deep green to red. In view of this rule, in this work, a novel colorimetric technique for sensitive determination of F-, Br- and I- was developed. This method has the detection limits of 2.60 x 10(-6) M, 6.64 x 10(-8) M and 9.93 x 10(-9) M and linear ranges between 1.98 x 10(-5)-122 x 10(-3) M, 1.99 x 10(-6)-2.0 x 10(-4)M and 1.07 x 10(-7)- 2.86 x 10(-5)M for F-, Br- and I-, respectively. Assays are highly selective over other ions. They effectively applied to detection of halide ions in real water samples. (C) 2019 Published by Elsevier B.V.
机译:通过化学还原技术合成柠檬酸盐和聚乙烯醇封端的金纳米颗粒(PVA-GNP),并用DLS,SEM,EDS,XRD,UV-Vis和FT-IR分析完全表征。基于P-Dimethylamobenzaldehyde(DABA)作为EHRLICH的生物学和Au(III)的简单实用的比色感传感器,其用酶样活性的PVA-GNPS模拟催化剂的H2O2与酶活性,以确定F-, BR-和卤化物阴离子。制备的PVA-GNP,可以同时催化H2O2的崩解,其用于将Au(III)离子降低到共掺杂的Au-NP和对卤化物离子的存在的情况下对卤化物离子的存在而对P-二甲基氨基苯并醛的氧化。可以形成并改善传感器选择性。卤化物离子(F-,BR-和I-)有效地减少了GNP的催化活性通过Au +和Au-0之间的相互作用崩解含氧水,抑制p- 二甲基氨基苯并醛EHRLICH的生物试剂的氧化。在该系统中,含有PVA-GNPS,H 2 O 2,P-二甲基氨基苯并甲醛的生物试剂和Au(III),增加卤离子(F,Br和1)浓度显示颜色从深绿色变为红色。鉴于此规则,在这项工作中,开发了一种用于敏感的F-,BR和I-敏感的比色作用。该方法的检测限为2.60×10(-6)m,6.64×10(-8)m和9.93 x 10(-9)m,线性范围在1.98 x 10(-5)-122 x 10之间( - - 3)M,1.99×10(-6)-2.0×10(-4)M和1.07×10(-7)-2.86×10(-5)m,分别用于F-,BR-和I-。测定在其他离子上具有高度选择性。它们有效地应用于实际水样中的卤离子的检测。 (c)2019年由elestvier b.v发布。

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