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首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >Colorimetric and visual determination of total nereistoxin-related insecticides by exploiting a nereistoxin-driven aggregation of gold nanoparticles
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Colorimetric and visual determination of total nereistoxin-related insecticides by exploiting a nereistoxin-driven aggregation of gold nanoparticles

机译:比色法和视觉测定总的神经毒素相关杀虫剂,利用神经毒素驱动的金纳米颗粒聚集

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摘要

We describe a method for the visual and colorimetric determination of total nereistoxin-related insecticide residues. It is based on the nereistoxin-induced aggregation of gold nanoparticles (AuNPs). The nereistoxin-related insecticides are first converted to nereistoxins in a pretreatment step that involves liquid-liquid extraction and hydrolysis for sample clean-up. Next, the interaction between nereistoxins and AuNPs provides a possibility to visually semi-quantify or accurately quantify nereistoxins because it is associated with a color change from red to blue. The interaction between nereistoxins and AuNPs is caused by the electrostatic interactions and the strong Au-S covalent bonds. The photometric assay is performed by measuring the ratio of absorbances at 660 and 519 nm, respectively. It has a detection range from 50 to 250 mu g kg(-1) and a detection limit of 40 mu g kg(-1) to for the total quantity of nereistoxin-related insecticides. The visually detectable color change to blue occurs in the 50 to 100 mu g kg(-1) concentration range, and this enables a fast visual test on whether or not the concentration of total nereistoxin-related insecticides exceeds the tolerated level of 100 mu g kg(-1). The method was applied to the analysis of nereistoxin-related insecticides in agricultural products.
机译:我们描述了一种视觉和比色法测定总神经毒素相关杀虫剂残留的方法。它基于神经毒素诱导的金纳米颗粒(AuNPs)聚集。与神经毒素相关的杀虫剂首先在包括液-液萃取和水解以净化样品的预处理步骤中转化为神经毒素。接下来,由于神经病毒素与从红色到蓝色的颜色变化相关联,因此神经病毒素与AuNP之间的相互作用提供了视觉上半定量或准确定量神经病毒素的可能性。 Nereistoxins与AuNPs之间的相互作用是由静电相互作用和牢固的Au-S共价键引起的。通过分别测量在660和519 nm处的吸光度比率来执行光度测定。其检测范围为50至250μg kg(-1),检出限为40μg kg(-1)至神经毒素相关杀虫剂的总量。在50到100μg kg(-1)的浓度范围内,可以通过肉眼看到的颜色变成蓝色,这使得可以快速进行目视测试,确定与神经毒素相关的全部杀虫剂的浓度是否超过了100μg的容许水平。千克(-1)。该方法用于农产品中神经毒素相关杀虫剂的分析。

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