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Zn~(2+) conjugated Schiff base organic nanoparticles for selective quantification and degradation of diethyl chlorophosphate in aqueous media: Application to green vegetables

机译:Zn〜(2+)共轭席夫碱有机纳米颗粒用于水介质中氯磷酸二乙酯的选择性定量和降解:在绿色蔬菜中的应用

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In the present work, zinc conjugated Schiff base organic nanoparticles have been fabricated and explored for the quantification and degradation of diethyl chlorophosphate (a common pesticide for green leafy vegetables). Primarily, a Schiff base (SB) was derived by the condensation of 2-hydroxy-4-methoxybenzophenone and 2-aminoethanol and then, it was transformed into organic nanoparticles by reprecipitation method. Further, the Zn(2+ )ions were added to dispersion of organic nanoparticles (SB-ONPs) to form zinc conjugated Schiff base organic nanoparticles (ZnSB-ONPs). Their conjugation turns 'ON' the spectrofluorimetric response and displayed an elevated emission band centered at 435 nm. Further, the emission signal of ZnSB-ONPs was quenched in the presence of diethyl chlorophosphate with visual appearance of HCl gas which indicated breakage/formation of bonds. Therefore, a detailed investigation of recognition and degradation of diethyl chlorophosphate was accomplished by spectrofluorimetric, spectroscopic (H-1 NMR and P-31 NMR) and mass spectrometric experiments. The use of Zn2+ ions in conjugation with Schiff base organic nanoparticles (in ZnSB-ONPs) offered some advantages like selective spectrofluorimetric recognition and degradation of diethyl chlorophosphate, quantification of diethyl chlorophosphate up to nano-molar levels (LOQ = 55.2 nM), and application of developed protocols in aqueous media to green leafy vegetables and tea samples.
机译:在目前的工作中,已经制备并探索了锌缀合的席夫碱基有机纳米颗粒,用于定量和降解二乙基氯磷酸酯(绿叶蔬菜的常见农药)。首先,通过2-羟基-4-甲氧基二苯甲酮与2-氨基乙醇的缩合反应得到席夫碱(SB),然后通过再沉淀法将其转化为有机纳米颗粒。此外,将Zn(2+)离子添加到有机纳米颗粒(SB-ONPs)的分散液中,以形成锌共轭席夫碱有机纳米颗粒(ZnSB-ONPs)。它们的共轭使光谱荧光响应“打开”,并显示出以435 nm为中心的升高的发射带。此外,在氯磷酸二乙酯的存在下,ZnSB-ONPs的发射信号被淬灭,目视出现HCl气体,表明键断裂/形成。因此,通过光谱荧光,光谱法(H-1 NMR和P-31 NMR)和质谱实验对氯磷酸二乙酯的识别和降解进行了详细研究。 Zn2 +离子与席夫碱有机纳米粒子(在ZnSB-ONPs中)的结合使用提供了一些优势,例如选择性荧光光谱法识别和降解了氯代磷酸二乙酯,定量了氯代磷酸二乙酯直至纳摩尔浓度(LOQ = 55.2 nM)以及应用在水性介质中开发绿叶蔬菜和茶样品的方案。

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