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一步微波合成新型三元纳米复合物作为高效发光体和氮化硼量子点作为新的共反应物,用于毒死蜱的阴极电致化学发光监测。

Single-step microwave synthesis of a novel ternary nanocomposite as an efficient luminophore and boron nitride quantum dots as a new coreactant for a cathodic ECL monitoring of chlorpyrifos.

机构信息

Electroanalytical Chemistry Laboratory, Department of Chemistry, Faculty of Science, University of Zanjan, Postal Code 45371-38791, Zanjan, Iran.

出版信息

Anal Methods. 2022 Feb 17;14(7):750-762. doi: 10.1039/d1ay01687c.

DOI:10.1039/d1ay01687c
PMID:35112124
Abstract

In this study, a novel and innovative enzyme-free electrochemiluminescence (ECL) pesticide probe based on a ternary nanocomposite, CuS/CQDs/g-CNNS, was demonstrated for the accurate monitoring of chlorpyrifos. Boron nitride quantum dots were introduced as a new and effective coreactant in comparison with other coreactants, such as hydrogen peroxide, peroxydisulfate, and tripropylamine, in the negative potential range for the first time. The nanocomposite as a promoted luminophore was synthesized by a one-pot microwave route. Carbon quantum dots and copper sulfide nanostructures were truly incorporated on the porous graphitized carbon nitride, which displayed a good cooperative effect on the signal improvement. CuS as a co-reaction accelerator and CQDs with a superior luminescence effect produced more radical species, and thus, the ECL signal was amplified. Upon increasing the appropriate concentration of this coreactant in electrolyte media, the signal intensity of the nanocomposite increases. A low detection limit of 3.0 × 10 M and a wide range from 2.0 × 10 to 7.0 × 10 M were gained. Also, the fabricated pesticide sensor presented excellent repeatability for 20 consecutive optical signals, with a RSD of about 1.4%. Owing to its high proficiency, the developed sensor was applied as a new probe for chlorpyrifos analysis in water and fruit samples.

摘要

在这项研究中,展示了一种基于三元纳米复合材料(CuS/CQDs/g-CNNS)的新颖且创新的酶免电化学发光(ECL)农药探针,可用于准确监测毒死蜱。与其他核心反应物(例如过氧化氢、过二硫酸盐和三丙胺)相比,首次在负电势范围内引入了氮化硼量子点作为一种新的有效核心反应物。该纳米复合材料作为促进发光体,通过一锅微波法合成。碳量子点和硫化铜纳米结构真正地掺入多孔石墨化氮化碳中,这对信号增强具有良好的协同作用。CuS 作为共反应加速剂和具有优越发光效果的 CQDs 产生更多的自由基物质,从而放大了 ECL 信号。在电解质介质中适当增加这种核心反应物的浓度,纳米复合材料的信号强度增加。获得了低至 3.0×10 M 的检测限和从 2.0×10 到 7.0×10 M 的宽检测范围。此外,所制备的农药传感器在 20 个连续光学信号中表现出出色的重复性,其 RSD 约为 1.4%。由于其高效性,该开发的传感器被用作水中和水果样品中分析毒死蜱的新探针。

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