A Novel p-Nitroaniline Fluorescent Sensor Based on Molecular Recognition of Carboxymethyl-[beta]-cyclodextrin-capped ZnO/ZnS/MgO Nanocomposites

Carboxymethyl-β-cyclodextrin (CMCD)-capped ZnO/ZnS/MgO nanocomposites, which combined water-soluble host molecules with multi-shelled nanocrystals, have been prepared. The nanocomposites have good fluorescence performance and host-guest complexation. Thus, a novel fluorescent sensor for the determin...

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Veröffentlicht in:Analytical sciences 2011-08, Vol.27 (8)
Hauptverfasser: GAO, Qianqian, LIU, Fei, JIANG, Yuzhu, DAI, Huajun, FU, Tianhua, KOU, Xingming
Format: Artikel
Sprache:eng
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Zusammenfassung:Carboxymethyl-β-cyclodextrin (CMCD)-capped ZnO/ZnS/MgO nanocomposites, which combined water-soluble host molecules with multi-shelled nanocrystals, have been prepared. The nanocomposites have good fluorescence performance and host-guest complexation. Thus, a novel fluorescent sensor for the determination of p-nitroaniline based on the molecular recognition of water-soluble CMCD-capped ZnO/ZnS/MgO nanocomposites has been proposed. Factors affecting the p-nitroaniline detection were investigated, and the optimum conditions were determined. Under the optimum conditions, the relative fluorescence intensity of CMCD-capped ZnO/ZnS/MgO nanocomposites was linearly proportional to the concentration of p-nitroaniline over the range from 8.33 × 10-7 to 5.83 × 10-5 mol L-1 with a correlation coefficient of 0.9967 and a detection limit of 6.38 × 10-7 mol L-1. The proposed method was successfully applied to the determination of p-nitroaniline in water samples. The related mechanisms were also discussed.
ISSN:0910-6340
1348-2246