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快速微波法制备红色碳量子点作为荧光开启-关闭-开启探针,用于真实样品中 Fe(III)离子和抗坏血酸的顺序测定。

Rapid microwave fabrication of red-carbon quantum dots as fluorescent on-off-on probes for the sequential determination of Fe(III) ion and ascorbic acid in authentic samples.

机构信息

Guangxi Key Laboratory of Natural Polymer Chemistry and Physics, College of Chemistry and Materials, Nanning Normal University, Nanning 530001, China.

出版信息

Anal Methods. 2023 Jun 29;15(25):3101-3113. doi: 10.1039/d3ay00501a.

Abstract

In this study, fluorescent red-carbon quantum dots (R-CQDs) with an ultrahigh fluorescence quantum yield of 45% were rapidly and easily synthesized by thermal pyrolysis of 2,5-diaminotoluene sulfate and 4-hydroxyethylpiperazineethanesulfonic acid using a one-step microwave-assisted hydrothermal approach. R-CQDs possessed the excitation-independent fluorescence property with the optimal emission peak at 607 nm under the excitation wavelength of 585 nm. R-CQDs exhibited excellent fluorescence stability under extremely harsh conditions in a pH range of 2-11, high ionic strength (1.8 M of NaCl), and long UV light irradiation time (160 min). The fluorescence quantum yield of these R-CQDs was as high as 45%, implying their preferable application in chemosensors and biological analysis. Because Fe ion bound with R-CQDs and statically quenched the fluorescence of R-CQDs, the fluorescence intensity of R-CQDs was recovered after the addition of ascorbic acid (AA) its redox reaction with Fe ion. R-CQDs were developed as highly sensitive fluorescent on-off-on probes for sequentially sensing Fe ions and AA. Under the optimal experimental conditions, the linear range for Fe ion detection was 1-70 μM with a detection limit of 0.28 μM, and the linear range for AA detection was 1-50 μM with a detection limit of 0.42 μM. The successful detection of Fe ions in authentic water samples and the successful sensing of AA in human body fluids and vitamin C tablets further proved the practical application prospects of this efficient strategy in the environmental protection and disease diagnosis fields.

摘要

在这项研究中,通过一步微波辅助水热法,使用硫酸 2,5-二氨基甲苯和 4-羟乙基哌嗪乙磺酸作为原料,快速简便地合成了具有超高荧光量子产率(45%)的红色荧光碳量子点(R-CQDs)。R-CQDs 具有激发独立的荧光特性,在 585nm 激发波长下最佳发射峰位于 607nm。R-CQDs 在极其苛刻的条件下表现出优异的荧光稳定性,在 pH 值范围为 2-11、高离子强度(1.8M NaCl)和长紫外线照射时间(160min)下。这些 R-CQDs 的荧光量子产率高达 45%,表明它们在化学传感器和生物分析中有较好的应用前景。由于 Fe 离子与 R-CQDs 结合并静态猝灭了 R-CQDs 的荧光,因此在加入抗坏血酸(AA)后,其与 Fe 离子的氧化还原反应会恢复 R-CQDs 的荧光强度。R-CQDs 被开发为用于顺序检测 Fe 离子和 AA 的高灵敏度荧光开-关-开探针。在最佳实验条件下,Fe 离子检测的线性范围为 1-70μM,检测限为 0.28μM,AA 检测的线性范围为 1-50μM,检测限为 0.42μM。在真实水样中成功检测到 Fe 离子,以及在人体体液和维生素 C 片剂中成功检测到 AA,进一步证明了该高效策略在环境保护和疾病诊断领域的实际应用前景。

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