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Ultrafast and Energy-saving Synthesis of Nitrogen and Chlorine Co-doped Carbon Nanodots via Neutralization Heat for Selective Detection of Cr(VI) in Aqueous Phase

机译:氮气和氯共掺杂碳纳米蛋白的超快和节能合成通过中和热量进行水相中Cr(VI)的选择性检测

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摘要

In this work, it is presented for the first time that nitrogen and chlorine co-doped carbon nanodots (N,Cl-CDs) were synthesized by simply mixing glucose, concentrated hydrochloric acid (HCl), and 1,2-ethylenediamine (EDA). No external heat was employed; the neutralization reaction served as the heat source. The glucose served as the carbon source while EDA and HCl were the N and Cl dopants, respectively. The fluorescence of N,Cl-CDs was adequately quenched by hexavalent chromium Cr(VI) based on a combination of dynamic quenching and inner filter effect (IFE). Accordingly, an efficient N,Cl-CDs-based fluorescence probe was established for sensitive and selective detection of Cr(VI). The proposed fluorescence sensor provides a linear recognition range for Cr(VI) determination from 3 to 40 µM with a limit of detection (LOD) of 0.28 µM (14.6 µg/L). The proposed fluorescence method was successfully utilized to detect Cr(VI) in different water samples with satisfactory results. The spike recoveries vary from 97.01% to 103.89% with relative standard deviations (RSDs) of less than 0.82%. This work highlights the development of a simple, ultrafast, and energy-saving one-step synthetic route to fabricate N,Cl-CDs for highly selective and sensitive detection of Cr(VI) in real water samples. It is anticipated that the proposed fluorescence method could be further explored and widely used for Cr(VI) detection in the environmental industry.
机译:在这项工作中,通过简单地混合葡萄糖,浓盐酸(HCl)和1,2-乙二胺(EDA)首次介绍氮气和氯共掺杂碳纳多(N,CL-CD)的第一次呈现。没有采用外部热量;中和反应用作热源。葡萄糖作为碳源,而EDA和HCl分别是N和Cl掺杂剂。基于动态猝灭和内部滤光效果(IFE)的组合,通过六价铬Cr(vi)充分淬灭N,Cl-Cds的荧光。因此,建立了高效的N,C1-CDS的荧光探针,用于Cr(VI)的敏感和选择性检测。所提出的荧光传感器为Cr(VI)的线性识别范围提供3至40μm的Cr(VI)测定,其检测限为0.28μm(14.6μg/l)。所提出的荧光法在不同水样中检测不同水样中的Cr(VI),结果令人满意。尖峰回收率从97.01%变化至103.89%,相对标准偏差(RSD)小于0.82%。这项工作突出了一种简单,超快和节能一步的一步合成途径的开发,用于制造N,CL-CD,用于在真实水样中的CR(VI)的高选择性和敏感性检测。预计可以进一步探索所提出的荧光方法,并广泛用于环境工业中的CR(VI)检测。

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