Colorimetric fluorescent paper strip with smartphone platform for quantitative detection of cadmium ions in real samples

[Display omitted] •An AIE-based colorimetric fluorescent probe for detection of Cd2+ was prepared.•The colorimetric sensor uses EDA-GO as a colorimetric reference.•The probe has highly selective and sensitive to Cd2+ with LOD is 33.3 nM.•Fluorescent paper strips are portable and widely used for on-s...

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Veröffentlicht in:Journal of hazardous materials 2020-06, Vol.392, p.122506, Article 122506
Hauptverfasser: Wang, Haiqian, Da, Liangguo, Yang, Liang, Chu, Suyun, Yang, Fan, Yu, Shaoming, Jiang, Changlong
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Sprache:eng
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Zusammenfassung:[Display omitted] •An AIE-based colorimetric fluorescent probe for detection of Cd2+ was prepared.•The colorimetric sensor uses EDA-GO as a colorimetric reference.•The probe has highly selective and sensitive to Cd2+ with LOD is 33.3 nM.•Fluorescent paper strips are portable and widely used for on-site detection.•Smartphone analysis platform can realize rapid quantitative detection of Cd2+. Instrument-free, portable and direct read-out mini-devices have wider application prospects in various fields, especially for real-time/on-site detection in environmental science. Herein, a colorimetric fluorescent sensor for detecting cadmium ions (Cd2+) based on aggregation-induced emission (AIE) was established, fluorescent paper strips integrated with smartphone platform was further designed for the visualization, on-site and quantitative detection of Cd2+. The colorimetric fluorescent sensor was prepared by mixing orange emission glutathione-stabilized gold nanoclusters (AuNCs) with blue emission ethylenediamine functionalized graphene oxide (EDA-GO), and introducing copper ions (Cu2+) to quench the orange emission of AuNCs while the blue emission served as a background reference without color change. The Cd2+ can induce Cu2+-GSH-AuNCs to aggregation and emit orange fluorescence, causing the fluorescent color of the sensor changed from blue to red with the limit of detection (LOD) as low as 33.3 nM in solution. Moreover, fluorescent paper strips integrated with smartphone platform has a sensitive detection of Cd2+ with the LOD of 0.1 μM in rice samples. The method reported here might have great application prospects in real-time monitoring of foods safety and environmental protection.
ISSN:0304-3894
1873-3336
DOI:10.1016/j.jhazmat.2020.122506