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具有增强光学性能的表面活性剂包裹 N 掺杂碳点作为 Cr(VI)检测的选择性传感器。

Surfactant encapsulating N-doped carbon dots with enhanced optical properties as a selective sensor for Cr(VI) detection.

机构信息

Faculty of Geosciences and Environmental Engineering, Southwest Jiaotong University, Chengdu 611756, China.

School of Life Science and Engineering, Southwest Jiaotong University, Chengdu 610031, China.

出版信息

Analyst. 2023 Jun 12;148(12):2818-2824. doi: 10.1039/d3an00517h.

Abstract

Detecting hexavalent chromium (Cr(VI)) is important for human health and environmental protection due to its high toxicity, carcinogenicity and persistence, but developing a sensor to selectively detect Cr(VI) remains challenging. Here, we proposed a selective fluorescent sensor for Cr(VI) detection using cetyltrimethylammonium chloride (CTAC) modified N-doped carbon dots (N-CDs-CTAC) synthesized a post-modification strategy. Specifically, the introduced CTAC molecules could self-assemble into micelles for encapsulating fluorescent N-CDs, causing the aggregation of N-CD particles and then displaying enhanced fluorescence emission owing to the aggregation-induced emission effect. Moreover, the positively charged CTAC can interact with negatively charged Cr(VI) in the form of an anion (CrO), boosting the ability of the selective recognition of Cr(VI). Thus, a N-CDs-CTAC fluorescent probe was designed to selectively monitor Cr(VI) with an ultralow detection limit down to 40 nM, and was further used for Cr(VI) detection in real environmental samples. The fluorescence quenching mechanism of N-CDs-CTAC by Cr(VI) was attributed to dynamic quenching. The proposed assay opens an avenue for the selective detection of Cr(VI) in the environmental monitoring field.

摘要

由于六价铬(Cr(VI))具有高毒性、致癌性和持久性,因此对其进行检测对于人类健康和环境保护至关重要,但开发一种能够选择性检测 Cr(VI) 的传感器仍然具有挑战性。在这里,我们提出了一种使用十六烷基三甲基氯化铵(CTAC)修饰的氮掺杂碳点(N-CDs-CTAC)通过后修饰策略合成的选择性荧光传感器来检测 Cr(VI)。具体来说,引入的 CTAC 分子可以自组装成胶束以包裹荧光 N-CDs,导致 N-CD 颗粒聚集,然后由于聚集诱导发射效应显示出增强的荧光发射。此外,带正电荷的 CTAC 可以与以阴离子(CrO )形式存在的带负电荷的 Cr(VI)相互作用,从而提高 Cr(VI)选择性识别的能力。因此,设计了一种 N-CDs-CTAC 荧光探针,用于选择性监测 Cr(VI),其检测限低至 40 nM,并进一步用于实际环境样品中的 Cr(VI)检测。N-CDs-CTAC 被 Cr(VI)猝灭的荧光机制归因于动态猝灭。该测定方法为环境监测领域中 Cr(VI)的选择性检测开辟了一条途径。

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