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Silver Nanoparticle-Based Chemiluminescent Sensor Array for Pesticide Discrimination

机译:基于银纳米粒子的化学发光传感器阵列,用于农药区分

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In this work, we developed a simple, facile, and highly sensitive nanoparticle-based chemiluminescent (CL) sensor array for the discrimination of organophosphate and carbamate pesticides. This CL sensor array is based on simultaneous utilization of the triple-channel properties of the luminol-functionalized silver nanoparticle (Lum-AgNP) and H2O2 CL system containing CL intensity, the time for CL emissions to appear, and the time to reach the CL peak value, which are able to be measured via a single experiment. The triple-channel properties can be simultaneously altered after interaction with pesticides, producing distinct CL response patterns as "fingerprints" related to each specific pesticide, which was subjected to principal component analysis (PCA) to generate a clustering map. Using this sensor array, five organophosphate and carbamate pesticides, including dimethoate, dipterex, carbaryl, chlorpyrifos, and carbofuran, have been well-distinguished at a concentration of 24 mu g/mL. A total of 20 unknown pesticide samples have been successfully identified with an accuracy of 95%. The simple strategy of this study is expected to promote the development of functionalized nanomaterial-based sensor arrays.
机译:在这项工作中,我们开发了一种简单,简便且高度灵敏的基于纳米粒子的化学发光(CL)传感器阵列,用于区分有机磷酸盐和氨基甲酸酯农药。此CL传感器阵列基于同时利用包含CL强度的鲁米诺官能化银纳米粒子(Lum-AgNP)和H2O2 CL系统的三通道特性,出现CL发射的时间以及到达CL的时间峰值,可以通过一个实验进行测量。与农药相互作用后,三通道特性可以同时更改,从而产生与每种特定农药相关的独特的CL响应模式作为“指纹”,并对其进行了主成分分析(PCA)以生成聚类图。使用该传感器阵列,可以很好地区分出五种有机磷酸盐和氨基甲酸酯农药,包括乐果,双蝶呤,西维因,毒死rif和呋喃呋喃,浓度为24μg / mL。已成功鉴定出总共20种未知农药样品,准确度为95%。这项研究的简单策略有望促进功能化的基于纳米材料的传感器阵列的发展。

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