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Fluorescent carbon quantum dots synthesized using phenylalanine and citric acid for selective detection of Fe3+ ions
被引:84
|作者:
Pu, Zheng-Fen
[1
]
Wen, Qiu-Lin
[1
]
Yang, Yan-Ju
[1
]
Cui, Xiao-Miao
[1
]
Ling, Jian
[1
]
Liu, Peng
[1
]
Cao, Qiu-E
[1
]
机构:
[1] Yunnan Univ, Funct Mol Anal & Biotransformat Key Lab, Univ Yunnan Prov, Sch Chem Sci & Technol, Kunming 650091, Yunnan, Peoples R China
基金:
中国国家自然科学基金;
关键词:
Carbon dots;
Phenylalanine;
Fluorescence assay;
Fe3+ ions;
SENSING PLATFORM;
FE(III) IONS;
NITROGEN;
GREEN;
SENSOR;
NANODOTS;
SULFUR;
PROBE;
D O I:
10.1016/j.saa.2019.117944
中图分类号:
O433 [光谱学];
学科分类号:
0703 ;
070302 ;
摘要:
A facile, economical and one-step hydrothermal method was used to synthesize fluorescent carbon dots by utilizing citric acid as carbon source and phenylalanine to provide nitrogen. The as-prepared fluorescence carbon dots had strong blue light emission around 440 nm. As confirmed by UVvis absorption, X-ray photoelectron spectroscopic, Fourier transform infrared spectroscopy and transmission electron microscope characterization, the carbon dots were small and very stable in water for using as a fluorescent probe. It was also found that the fluorescence of the carbon dots could be quenched in the presence of Fe3+ ions, and the quenching rate was linear with the concentration of Fe3+ ions. We here proposed a static quenching mechanism about the fluorescence of the Phe-CDs could be selectively quenched by Fe3+ ions, which was because these Fe3+ ions could easily combine with the hydroxyl or carboxyl groups on the surface of Phe-CDs and induced aggregation. In addition, the pH had little effect on the fluorescence intensity of the Phe-CDs and maintained excellent fluorescence intensity even under extreme pH value conditions and could be used for the detection of Fe3+ ions. We have demonstrated that the method using the carbon dots for Fe3+ ions detection was rapid, reliable, and selective with a detection limit as low as 0.720 mu M and a dynamic range from 5.0 to 500.0 mu M. Moreover, the results of determination Fe3+ ions in tap water samples indicated that the presented method has potential for practical application in environmental metal analysis. (c) 2019 Elsevier B.V. All rights reserved.
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