| Literature DB >> 26546705 |
Jian Rong Zhang1, Ai Lian Zeng1, Hong Qun Luo2, Nian Bing Li3.
Abstract
In this work, a simple and sensitive Cr(VI) sensor is proposed based on fluorescent polyethyleneimine-stabilized Ag nanoclusters, which allows the determination over a wide concentration range of 0.1 nM-3.0 μM and with a detection limit as low as 0.04 nΜ and a good selectivity. The quenching mechanism was discussed in terms of the absorption and fluorescence spectra, suggesting that Cr(VI) is connected to Ag nanoclusters by hydrogen bond between the oxygen atom at the vertex of tetrahedron structure of Cr(VI) and the amino nitrogen of polyethyleneimine that surrounded Ag nanoclusters and electron transfer from Ag nanoclusters to highly electron-deficient Cr(VI) results in fluorescence quenching. Despite the failure to quench the fluorescence efficiently, Cr(III) can also be measured using the proposed Ag nanoclusters by being oxidized to Cr(VI) in alkaline solution (pH ∼ 9) containing H2O2. Therefore, our approach could be used to detect Cr(VI), Cr(III) and the total chromium level in aqueous solution. In addition, Cr(VI) analysis in real water samples were satisfactory, indicating this method could be practically promising for chromium measurements.Entities:
Keywords: Cr(VI); Fluorescence quenching; Polyethyleneimine; Silver nanoclusters
Year: 2015 PMID: 26546705 DOI: 10.1016/j.jhazmat.2015.10.036
Source DB: PubMed Journal: J Hazard Mater ISSN: 0304-3894 Impact factor: 10.588