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Ultrasonic-Assisted Synthesis of N-Doped, Multicolor Carbon Dots toward Fluorescent Inks, Fluorescence Sensors, and Logic Gate Operations

Over past decades, the multicolor carbon dots (M-CDs) have attracted enormous attentions due to their tunable photoluminescence and versatile applications. Herein, the nitrogen-doped (N-doped) M-CDs including green, chartreuse, and pink emissive CDs are successfully synthesized by ultrasonic treatme...

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Autores principales: Xu, Jiali, Cui, Kai, Gong, Tianyu, Zhang, Jinyang, Zhai, Zhirou, Hou, Linrui, Zaman, Fakhr uz, Yuan, Changzhou
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8839126/
https://www.ncbi.nlm.nih.gov/pubmed/35159657
http://dx.doi.org/10.3390/nano12030312
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author Xu, Jiali
Cui, Kai
Gong, Tianyu
Zhang, Jinyang
Zhai, Zhirou
Hou, Linrui
Zaman, Fakhr uz
Yuan, Changzhou
author_facet Xu, Jiali
Cui, Kai
Gong, Tianyu
Zhang, Jinyang
Zhai, Zhirou
Hou, Linrui
Zaman, Fakhr uz
Yuan, Changzhou
author_sort Xu, Jiali
collection PubMed
description Over past decades, the multicolor carbon dots (M-CDs) have attracted enormous attentions due to their tunable photoluminescence and versatile applications. Herein, the nitrogen-doped (N-doped) M-CDs including green, chartreuse, and pink emissive CDs are successfully synthesized by ultrasonic treatment of kiwifruit juice with different additive reagents such as ethanol, ethylenediamine, and acetone. Owing to their strong fluorescence upon irradiation with 365 nm UV light, the highly water-soluble M-CDs present great potential in the anticounterfeit field as fluorescent inks. Particularly, the resulting green emission CDs (G-CDs) with excellent fluorescence and stability are applied as a label-free probe model for “on–off” detection of Fe(3+). The fluorescence of G-CDs is significantly quenched by Fe(3+) through static quenching. The nanoprobe demonstrates good selectivity and sensitivity toward Fe(3+) with a detection limit of ~0.11 μM. Besides, the quenched fluorescence of G-CDs by Fe(3+) can be recovered by the addition of PO(4)(3−) or ascorbic acid (AA) into the CDs/Fe(3+) system to realize the “off–on” fluorescent process. Furthermore, NOT and IMPLICATION logic gates are constructed based on the selection of Fe(3+) and PO(4)(3−) or AA as the inputs, which makes the G-CD-based sensors utilized as various logic gates at molecular level. Therefore, the N-doped M-CDs hold promising prospects as competitive candidates in monitoring the trace species, applications in food chemistry, anticounterfeit uses, and beyond.
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spelling pubmed-88391262022-02-13 Ultrasonic-Assisted Synthesis of N-Doped, Multicolor Carbon Dots toward Fluorescent Inks, Fluorescence Sensors, and Logic Gate Operations Xu, Jiali Cui, Kai Gong, Tianyu Zhang, Jinyang Zhai, Zhirou Hou, Linrui Zaman, Fakhr uz Yuan, Changzhou Nanomaterials (Basel) Article Over past decades, the multicolor carbon dots (M-CDs) have attracted enormous attentions due to their tunable photoluminescence and versatile applications. Herein, the nitrogen-doped (N-doped) M-CDs including green, chartreuse, and pink emissive CDs are successfully synthesized by ultrasonic treatment of kiwifruit juice with different additive reagents such as ethanol, ethylenediamine, and acetone. Owing to their strong fluorescence upon irradiation with 365 nm UV light, the highly water-soluble M-CDs present great potential in the anticounterfeit field as fluorescent inks. Particularly, the resulting green emission CDs (G-CDs) with excellent fluorescence and stability are applied as a label-free probe model for “on–off” detection of Fe(3+). The fluorescence of G-CDs is significantly quenched by Fe(3+) through static quenching. The nanoprobe demonstrates good selectivity and sensitivity toward Fe(3+) with a detection limit of ~0.11 μM. Besides, the quenched fluorescence of G-CDs by Fe(3+) can be recovered by the addition of PO(4)(3−) or ascorbic acid (AA) into the CDs/Fe(3+) system to realize the “off–on” fluorescent process. Furthermore, NOT and IMPLICATION logic gates are constructed based on the selection of Fe(3+) and PO(4)(3−) or AA as the inputs, which makes the G-CD-based sensors utilized as various logic gates at molecular level. Therefore, the N-doped M-CDs hold promising prospects as competitive candidates in monitoring the trace species, applications in food chemistry, anticounterfeit uses, and beyond. MDPI 2022-01-18 /pmc/articles/PMC8839126/ /pubmed/35159657 http://dx.doi.org/10.3390/nano12030312 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Xu, Jiali
Cui, Kai
Gong, Tianyu
Zhang, Jinyang
Zhai, Zhirou
Hou, Linrui
Zaman, Fakhr uz
Yuan, Changzhou
Ultrasonic-Assisted Synthesis of N-Doped, Multicolor Carbon Dots toward Fluorescent Inks, Fluorescence Sensors, and Logic Gate Operations
title Ultrasonic-Assisted Synthesis of N-Doped, Multicolor Carbon Dots toward Fluorescent Inks, Fluorescence Sensors, and Logic Gate Operations
title_full Ultrasonic-Assisted Synthesis of N-Doped, Multicolor Carbon Dots toward Fluorescent Inks, Fluorescence Sensors, and Logic Gate Operations
title_fullStr Ultrasonic-Assisted Synthesis of N-Doped, Multicolor Carbon Dots toward Fluorescent Inks, Fluorescence Sensors, and Logic Gate Operations
title_full_unstemmed Ultrasonic-Assisted Synthesis of N-Doped, Multicolor Carbon Dots toward Fluorescent Inks, Fluorescence Sensors, and Logic Gate Operations
title_short Ultrasonic-Assisted Synthesis of N-Doped, Multicolor Carbon Dots toward Fluorescent Inks, Fluorescence Sensors, and Logic Gate Operations
title_sort ultrasonic-assisted synthesis of n-doped, multicolor carbon dots toward fluorescent inks, fluorescence sensors, and logic gate operations
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8839126/
https://www.ncbi.nlm.nih.gov/pubmed/35159657
http://dx.doi.org/10.3390/nano12030312
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