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Facile synthesis of N-doped carbon dots for direct/indirect detection of heavy metal ions and cell imaging
被引:0
|作者:
Zijun Xu
Jin Liu
Kejia Wang
Binwei Yan
Shuwen Hu
Xueqin Ren
Zideng Gao
机构:
[1] China Agricultural University,College of Resources and Environment Sciences
[2] Beijing Key Laboratory of Farmland Soil Pollution Prevention and Remediation,undefined
来源:
Environmental Science and Pollution Research
|
2021年
/
28卷
关键词:
Carbon dots;
Fe;
Cr(VI);
Cellular imaging;
Cellular toxicity;
Facile synthesis;
D O I:
暂无
中图分类号:
学科分类号:
摘要:
In this study, an approach for the facile, rapid, energy-saving, and sensitive determination of Fe3+ and Cr(VI) was developed. L-arginine/D-glucose carbon quantum dots (Arg/Glu-CQDs), with a photoluminescence quantum yield of 21%, were synthesized from L-arginine and D-glucose through a facile, hydrothermal process. The maximum emission wavelength of Arg/Glu-CQDs was observed at 450 nm, under an excitation wavelength of 365 nm. In addition, Arg/Glu-CQDs exhibited a sensitive and selective response to Fe3+ compared to Fe2+ and other metal ions. The Arg/Glu-CQDs’ fluorescence was noticeably quenched through the inner filter effect (IFE) when Arg/Glu-CQDs were mixed with Fe3+. Accordingly, the Arg/Glu-CQDs/Fe2+ system could selectively detect Cr(VI); Cr(VI) could oxidize Fe2+ to Fe3+ and quench the fluorescence. The fluorescence sensor system (i.e., the Arg/Glu-CQDs/Fe2+ system) showed high sensitivity and excellent selectivity for the detection of Fe3+ and Cr(VI) in river water samples. Satisfactory detection efficiencies ranging from 97.07 to 103.46% were obtained. The cytotoxicity of Arg/Glu-CQDs was evaluated through an MTT assay using A549 cells as the target, to extend the application of Arg/Glu-CQDs to biological systems; the MTT assay indicated that the Arg/Glu-CQDs is non-cytotoxicity. Arg/Glu-CQDs were also successfully imaged in A549 cells indicating further application possibilities in bioimaging.
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页码:19878 / 19889
页数:11
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