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(E)-(4-氟苯基)-1,1-二氨基-2,3-二氮杂丁烯纳米结构的调谐用于选择性检测吡虫啉。

Tuning of (E)-(4-fluorophenyl)-1,1-diamino-2,3-diazabuta-1,3-diene nanostructures for the selective detection of imidacloprid.

机构信息

University Center for Research and Development, Chandigarh University, Gharuan, Punjab, 140413, India.

National Institute of Pharmaceutical Education and Research, Mohali, Punjab, 160062, India.

出版信息

Environ Res. 2023 Jan 1;216(Pt 1):114494. doi: 10.1016/j.envres.2022.114494. Epub 2022 Oct 6.

Abstract

The present work demonstrates a facile route for synthesizing the organic nanoparticles (ONPs) and the blue fluorescent Quantum Dots (QDs) based on an organic molecule named (E)-(4-fluorophenyl)-1,1-diamino-2,3-diazabuta-1,3-diene. The synthesis process possesses advantages viz green synthesis, non-toxic degraded products, and amount of organic compound. Initially, the ONPs were prepared using the nanoprecipitation method and were screened for their recognition potential against various pesticides, however, no selectivity has been observed. This motivated us to tune the ONPs into QDs. The QDs were prepared using the hydrothermal method and a color change was observed in the QDs solution under daylight and under a UV lamp. The emission wavelength was observed at 400 nm (λexcitation = 278 nm). The synthesized QDs exhibited selective sensing potential towards imidacloprid via a quenching mechanism. A normalised decrement in the luminescence intensity of QDs was observed on raising the concentration of imidacloprid and a good linear response was noticed over a concentration varies from 1 μM to 100 μM with a regression coefficient of 0.99. The detection limit was estimated to be 4.53 nM and quantification limit was calculated to be and 13.72 nM.

摘要

本工作展示了一种简便的方法,用于合成基于有机分子(E)-(4-氟苯基)-1,1-二氨基-2,3-二氮杂丁-1,3-二烯的有机纳米粒子(ONPs)和蓝色荧光量子点(QDs)。该合成过程具有绿色合成、无毒降解产物和有机化合物用量少等优点。首先,采用纳米沉淀法制备了 ONPs,并筛选了它们对各种农药的识别潜力,但未观察到选择性。这促使我们将 ONPs 调制成 QDs。QDs 采用水热法制备,在日光和紫外灯下观察到 QDs 溶液的颜色发生变化。发射波长在 400nm(λ激发= 278nm)处观察到。所合成的 QDs 对吡虫啉表现出选择性传感潜力,通过猝灭机制。随着吡虫啉浓度的升高,观察到 QDs 的荧光强度正常下降,在 1μM 至 100μM 的浓度范围内观察到良好的线性响应,回归系数为 0.99。检测限估计为 4.53nM,定量限计算为 13.72nM。

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