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用于水样中亚硝酸盐双模式化学发光和荧光检测的新型鲁米诺基碳点的合成与表征

Synthesis and Characterization of Novel Luminol-Based Carbon Dots for Dual-Mode Chemiluminescence and Fluorescence Detection of Nitrite in Water Samples.

作者信息

Othman Hazha Omar, Taha Suzan Salahaddin, Ali Diyar Salahuddin, Hassan Rebwar Omar

机构信息

Department of Chemistry College of Science, Salahaddin University-Erbil, Erbil, Kurdistan Region, Iraq.

Pharmacy Department, Tishk International University, Erbil, Iraq.

出版信息

Luminescence. 2025 Apr;40(4):e70169. doi: 10.1002/bio.70169.

Abstract

A green hydrothermal method was used to synthesize luminol-based carbon dots (Lu-CDs) for chemiluminescence (CL) and fluorescence (FL) detection of nitrite ions in water samples. Lu-CDs were characterized by using different techniques. The morphology indicates a spherical shape and an amorphous crystalline structure. A reversed flow injection analysis (rFIA) CL detection method was developed based on the Lu-CDs-N-bromosuccinimide-NaOH system, where the CL signal was quenched by nitrite ions. For FL analysis, Lu-CDs exhibited blue fluorescence at 425 nm (quantum yield: 56.42%) upon 350 nm excitation, which was quenched by nitrite ions at pH 6.5. Reaction conditions and parameters were optimized for both methods. The CL and FL methods showed linearity for nitrite concentrations of 1.5-20.0 μg mL and 0.85-50.0 μg mL, with detection limits of 0.75 and 0.55 μg mL, respectively. Applicability was validated through tap and groundwater analysis, showing agreement with a standard spectrophotometric method (Student's t-test, F-test). The greenness of the developed methods was evaluated using the AGREE and GAPI tools, while their applicability was assessed with the BAGI tool, highlighting their eco-friendly and reliable nature for nitrite detection in water.

摘要

采用绿色水热法合成了基于鲁米诺的碳点(Lu-CDs),用于水样中亚硝酸根离子的化学发光(CL)和荧光(FL)检测。通过不同技术对Lu-CDs进行了表征。其形态呈球形且为非晶态晶体结构。基于Lu-CDs- N-溴代琥珀酰亚胺-氢氧化钠体系开发了一种反向流动注射分析(rFIA)CL检测方法,其中CL信号被亚硝酸根离子淬灭。对于FL分析,在350 nm激发下,Lu-CDs在425 nm处呈现蓝色荧光(量子产率:56.42%),在pH 6.5时被亚硝酸根离子淬灭。对两种方法的反应条件和参数进行了优化。CL和FL方法对亚硝酸根浓度在1.5 - 20.0 μg mL和0.85 - 50.0 μg mL范围内呈线性,检测限分别为0.75和0.55 μg mL。通过对自来水和地下水的分析验证了其适用性,结果与标准分光光度法一致(学生t检验,F检验)。使用AGREE和GAPI工具评估了所开发方法的绿色度,同时用BAGI工具评估了其适用性,突出了它们在水中亚硝酸盐检测方面的生态友好和可靠特性。

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