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Lignin-based fluorescence-switchable graphene quantum dots for Fe 3+ and ascorbic acid detection.

Authors :
Zhu L
Li D
Lu H
Zhang S
Gao H
Source :
International journal of biological macromolecules [Int J Biol Macromol] 2022 Jan 01; Vol. 194, pp. 254-263. Date of Electronic Publication: 2021 Dec 03.
Publication Year :
2022

Abstract

The synthesis of lignin-based graphene quantum dots (GQDs) with excellent fluorescence stability, quantum yield, and biocompatibility for sensitive and selective detection of Fe <superscript>3+</superscript> and ascorbic acid (AA) has remained a challenging endeavor. Using an acidolysis process with 17.5% nitric acid followed by hydrothermal treatment at 200 °C, this study provided an improved synthesis route for the production of high-quality GQDs from alkali lignin. The nitrogen-doped GQDs exhibit remarkable fluorescence stability under a wide range of pH (3-10), duration (1-12 h), and [NaCl] (0-1000 mM) conditions, and have a high quantum yield of 28%. The GQDs or GQDs/Fe <superscript>3+</superscript> sensing systems ([GQDs] at 50 mg L <superscript>-1</superscript> , [Fe <superscript>3+</superscript> ] at 500 μmol L <superscript>-1</superscript> , and UV excitation at 370 nm) for fluorescence sensing of Fe <superscript>3+</superscript> or AA have excellent sensitivity, selectivity, and reproducibility. For Fe <superscript>3+</superscript> and AA, the limit of detection is 1.49 and 1.62 μmol L <superscript>-1</superscript> , respectively. Mechanism investigation shows that photoluminescence quenching is caused by the formation of GQDs-Fe <superscript>3+</superscript> complexes, whereas fluorescence recovery is due to Fe <superscript>3+</superscript> reduction by AA.<br /> (Copyright © 2021 Elsevier B.V. All rights reserved.)

Details

Language :
English
ISSN :
1879-0003
Volume :
194
Database :
MEDLINE
Journal :
International journal of biological macromolecules
Publication Type :
Academic Journal
Accession number :
34871654
Full Text :
https://doi.org/10.1016/j.ijbiomac.2021.11.199