| Literature DB >> 24840459 |
Jiangna Zhao1, Jianhui Deng1, Yinhui Yi1, Haitai Li1, Youyu Zhang2, Shouzhuo Yao1.
Abstract
In this work, label-free silicon quantum dots (SiQDs) were used as a novel fluorescence probe for the sensitive and selective detection of Cu(2+). The fluorescence of the SiQDs was effectively quenched by H2O2 from the reaction of ascorbic acid with O2, and hydroxyl radicals from Fenton reaction between H2O2 and Cu(+). The fluorescence intensity of SiQDs was quenched about 25% in 15 min after the addition of H2O2 (1mM). While the SiQDs was incubated with AA (1mM) and Cu(2+) (1 µM) under the same conditions, the fluorescence intensity of SiQDs decreased about 55%. Obviously, the recycling of Cu(2+) in the test system may lead to a dramatical decrease in the fluorescence of SiQDs. Under the optimized experimental conditions, the rate of fluorescence quenching of SiQDs was linearly dependent on the Cu(2+) concentration ranging from 25 to 600 nM with the limit of detection as low as 8 nM, which was much lower than that of existing methods. Moreover, the probe was successfully applied to the determination of Cu(2+) in different environmental water samples and human hair.Entities:
Keywords: Ascorbic acid; Cu(2+); Fenton reaction; Fluorescence quenching; H(2)O(2); Silicon quantum dots
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Year: 2014 PMID: 24840459 DOI: 10.1016/j.talanta.2014.03.031
Source DB: PubMed Journal: Talanta ISSN: 0039-9140 Impact factor: 6.057