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Sensitive Detection of Sulfide Ion Based on Fluorescent Ionic Liquid–Graphene Quantum Dots Nanocomposite

Sulfide ions (S(2−)) that are widely distributed in biological and industrial fields are extremely toxic and pose great harms to both ecological environment and human health. However, fluorescent sensors toward S(2−) ions commonly use S(2−)-recovered fluorescence of fluorophore that is first quenche...

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Autores principales: Qiu, Guanhua, Han, Yaoqi, Zhu, Xiaoqi, Gong, Jiawei, Luo, Tao, Zhao, Chang, Liu, Junjie, Liu, Jiyang, Li, Xiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8120006/
https://www.ncbi.nlm.nih.gov/pubmed/33996752
http://dx.doi.org/10.3389/fchem.2021.658045
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author Qiu, Guanhua
Han, Yaoqi
Zhu, Xiaoqi
Gong, Jiawei
Luo, Tao
Zhao, Chang
Liu, Junjie
Liu, Jiyang
Li, Xiang
author_facet Qiu, Guanhua
Han, Yaoqi
Zhu, Xiaoqi
Gong, Jiawei
Luo, Tao
Zhao, Chang
Liu, Junjie
Liu, Jiyang
Li, Xiang
author_sort Qiu, Guanhua
collection PubMed
description Sulfide ions (S(2−)) that are widely distributed in biological and industrial fields are extremely toxic and pose great harms to both ecological environment and human health. However, fluorescent sensors toward S(2−) ions commonly use S(2−)-recovered fluorescence of fluorophore that is first quenched mainly by metal ions. Fluorescent probe which enables direct, selective, and sensitive detection of S(2−) ion is highly desirable. Herein, we demonstrate one-step preparation of fluorescent ionic liquid–graphene quantum dots (IL-GQDs) nanocomposite, which can act as a fluorescent probe for direct and sensitive detection of S(2−) ion. The IL-GQDs nanocomposite is easily synthesized via facile molecular fusion of carbon precursor and in situ surface modification of GQDs by IL under hydrothermal condition. The as-prepared IL-GQDs nanocomposite has uniform and ultrasmall size, high crystallinity, and bright green fluorescence (absolute photoluminescence quantum yield of 18.2%). S(2−) ions can strongly and selectively quench the fluorescence of IL-GQDs because of the anion exchange ability of IL. With IL-GQDs nanocomposite being fluorescent probe, direct and sensitive detection of S(2−) is realized with a linear detection range of 100nM–10μM and 10μM–0.2mM (limit of detection or LOD of 23nM). Detection of S(2−) ions in environmental river water is also achieved.
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spelling pubmed-81200062021-05-15 Sensitive Detection of Sulfide Ion Based on Fluorescent Ionic Liquid–Graphene Quantum Dots Nanocomposite Qiu, Guanhua Han, Yaoqi Zhu, Xiaoqi Gong, Jiawei Luo, Tao Zhao, Chang Liu, Junjie Liu, Jiyang Li, Xiang Front Chem Chemistry Sulfide ions (S(2−)) that are widely distributed in biological and industrial fields are extremely toxic and pose great harms to both ecological environment and human health. However, fluorescent sensors toward S(2−) ions commonly use S(2−)-recovered fluorescence of fluorophore that is first quenched mainly by metal ions. Fluorescent probe which enables direct, selective, and sensitive detection of S(2−) ion is highly desirable. Herein, we demonstrate one-step preparation of fluorescent ionic liquid–graphene quantum dots (IL-GQDs) nanocomposite, which can act as a fluorescent probe for direct and sensitive detection of S(2−) ion. The IL-GQDs nanocomposite is easily synthesized via facile molecular fusion of carbon precursor and in situ surface modification of GQDs by IL under hydrothermal condition. The as-prepared IL-GQDs nanocomposite has uniform and ultrasmall size, high crystallinity, and bright green fluorescence (absolute photoluminescence quantum yield of 18.2%). S(2−) ions can strongly and selectively quench the fluorescence of IL-GQDs because of the anion exchange ability of IL. With IL-GQDs nanocomposite being fluorescent probe, direct and sensitive detection of S(2−) is realized with a linear detection range of 100nM–10μM and 10μM–0.2mM (limit of detection or LOD of 23nM). Detection of S(2−) ions in environmental river water is also achieved. Frontiers Media S.A. 2021-04-30 /pmc/articles/PMC8120006/ /pubmed/33996752 http://dx.doi.org/10.3389/fchem.2021.658045 Text en Copyright © 2021 Qiu, Han, Zhu, Gong, Luo, Zhao, Liu, Liu and Li. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Chemistry
Qiu, Guanhua
Han, Yaoqi
Zhu, Xiaoqi
Gong, Jiawei
Luo, Tao
Zhao, Chang
Liu, Junjie
Liu, Jiyang
Li, Xiang
Sensitive Detection of Sulfide Ion Based on Fluorescent Ionic Liquid–Graphene Quantum Dots Nanocomposite
title Sensitive Detection of Sulfide Ion Based on Fluorescent Ionic Liquid–Graphene Quantum Dots Nanocomposite
title_full Sensitive Detection of Sulfide Ion Based on Fluorescent Ionic Liquid–Graphene Quantum Dots Nanocomposite
title_fullStr Sensitive Detection of Sulfide Ion Based on Fluorescent Ionic Liquid–Graphene Quantum Dots Nanocomposite
title_full_unstemmed Sensitive Detection of Sulfide Ion Based on Fluorescent Ionic Liquid–Graphene Quantum Dots Nanocomposite
title_short Sensitive Detection of Sulfide Ion Based on Fluorescent Ionic Liquid–Graphene Quantum Dots Nanocomposite
title_sort sensitive detection of sulfide ion based on fluorescent ionic liquid–graphene quantum dots nanocomposite
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8120006/
https://www.ncbi.nlm.nih.gov/pubmed/33996752
http://dx.doi.org/10.3389/fchem.2021.658045
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