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Selectivity and sensitivity enhanced green energy waste based indirect-mu-solid phase extraction of carbaryl supported by DFT and molecular docking studies

机译:选择性和灵敏度增强基于GFT和分子对接研究支持的基于绿色能量废物的间接-MU固相萃取Carbaryl和分子对接研究

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This work reports on a simple, selective, sensitive, rapid and robust spectrophotometric indirect-mu-solid phase extraction (ID-mu-SPE) of carbaryl with 4,4'-bis(4-aminophenoxy) benzophenone. These methods were performed in a 5 mL disposable syringe with green energy waste as a solid phase extractor in phosphate buffer medium (pH 8.5). The alkaline hydrolysis of carbaryl resulted 1-naphthol, which interacts with the diazotized 4,4'-bis (4-aminophenoxy) benzophenone to produce red colored product (lambda(max):450 nm) or interacts with 4,4'-bis(4-aminophenoxy) benzophenone in the presence of an oxidizing agent, Se (IV) to give purple colored product (lambda(max):545 nm). The obtained colored products were stable for 45 and 63 h respectively. The resulted colored products obey Beer's law in the range of 0.3-12.0 mu g mL(-1) and 0.3-9.0 mu g mL(-1) for both methods with detection limits ranging from 0.020-0.022 mu g mL(-1). Additionally, the density functional theory calculations and molecular docking studies were performed to explore the stability profiles, intermolecular interactions and related electronic transitions for colored products to complement the experimental results. The developed methods are reliable and reproducible to detect carbaryl residues in its formulations, waters and food grains. (C) 2018 Elsevier B.V. All rights reserved.
机译:这项工作报告了具有4,4'-BIS(4-氨基苯氧基)二苯甲酮的碳酸的简单,选择性,敏感,鲁棒的分光光度碱基间接-Mu固相萃取(ID-MU-SPE)。这些方法在5ml一次性注射器中进行,其具有绿色能量废物作为磷酸盐缓冲介质(pH8.5)的固相提取器。 Carbaryl的碱性水解产生1-萘酚,其与重氮化的4,4'-Bis(4-氨基苯氧基)二苯甲酮相互作用,产生红色彩色产品(Lambda(最多):450nm)或与4,4'-BIS相互作用(4-氨基氧基)二苯甲酮在存在氧化剂,SE(IV)中给予紫色产品(Lambda(最多):545nm)。获得的有色产品分别稳定45和63小时。所产生的彩色产品在0.3-12.0 mu g ml(-1)和0.3-9.0 mu g ml(-1)的范围内遵守啤酒的定律,用于两种检测限范率为0.020-0.022 mu g ml(-1) 。另外,进行密度泛函理论计算和分子对接研究以探讨彩色产品的稳定性谱,分子间相互作用和相关电子转变,以补充实验结果。开发的方法可靠且可重复,可检测其制剂,水域和食品颗粒中的碳酸残基。 (c)2018年elestvier b.v.保留所有权利。

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