| Literature DB >> 30010315 |
Xinrong Guo1, Guoqing Yue1, Jianzhi Huang1, Cheng Liu1, Qiang Zeng1, Lishi Wang1.
Abstract
A simple chemical oxidation and ultrasound exfoliation method has been developed to synthesize the two-dimensional and ultrathin-layer materials-graphitic carbon nitride nanosheets (g-C3N4 NNs). The prepared ultrathin g-C3N4 NNs display strong fluorescence and stability, including good photostability and excellent antisalt ability. Herein, a new "on-off-on" fluorescent switching sensor is designed. The iron ion (Fe3+) has an ultrasensitive response to quench the fluorescence of g-C3N4 NNs based on the synergistic effect between inner filter effect and photoinduced electron transfer. The linear limit for Fe3+ was from 0.05 to 30 μmol L-1 with a detection limit of 0.018 μmol L-1. Meanwhile, the fluorescence of g-C3N4 NNs can recover through the redox reaction between Fe3+ and ascorbic acid (AA). In addition, the linear range for AA was from 0.2 to 112.5 μmol L-1 with a 0.086 μmol L-1 detection limit. The proposed method exhibited rapid response, excellent selectivity, wide detection range, and low detection limit for simultaneous analysis of Fe3+ and AA, and it was applied for the determination of Fe3+ and AA in water sample and human serum with satisfactory results.Entities:
Keywords: ascorbic acid; graphitic carbon nitride nanosheets; inner filter effect; iron ion; photoinduced electron transfer
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Year: 2018 PMID: 30010315 DOI: 10.1021/acsami.8b10529
Source DB: PubMed Journal: ACS Appl Mater Interfaces ISSN: 1944-8244 Impact factor: 9.229