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  • Composition and concentration-dependent photoluminescence of nitrogen-doped carbon dots

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    Embargoed until: 2024-04-18
    File version
    Accepted Manuscript (AM)
    Author(s)
    Esmaeili, M
    Wu, Z
    Chen, D
    Singh, A
    Sonar, P
    Thiel, D
    Li, Q
    Griffith University Author(s)
    Sonar, Prashant
    Thiel, David V.
    Chen, Dechao
    Li, Qin
    Year published
    2022
    Metadata
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    Abstract
    Photoluminescent carbon dots have received significant research interest in recent years owing to their extraordinary optical properties, biocompatibility, and versatile functionalities. Nitrogen-doping is a widely used strategy for enhancing the photo-electronic functionalities of carbon dots. However, there is a lack of systematic study on the composition and concentration-dependency emission behaviour of N-doped carbon dots in the literature. In this study, multicolour carbon dots (CDs) having different degree of nitrogen doping were synthesized by varying the molar ratio of citric acid to urea in the precursor via ...
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    Photoluminescent carbon dots have received significant research interest in recent years owing to their extraordinary optical properties, biocompatibility, and versatile functionalities. Nitrogen-doping is a widely used strategy for enhancing the photo-electronic functionalities of carbon dots. However, there is a lack of systematic study on the composition and concentration-dependency emission behaviour of N-doped carbon dots in the literature. In this study, multicolour carbon dots (CDs) having different degree of nitrogen doping were synthesized by varying the molar ratio of citric acid to urea in the precursor via hydrothermal treatment. The effects of nitrogen doping on chemical, optical, and electronic properties of CDs were characterized using various techniques including transmission electron microscopy (TEM), X-ray photoelectron spectroscopy (XPS), Fourier-transform infrared (FTIR); fluorescence and absorption spectroscopy; fluorescence lifetime and Hall effect measurements. Three main emissive centres were recognized in concentration-dependent fluorescence study of N-CDs which can be ascribed to molecular type of fluorescence, core emission, and mid-gap nitrogen states on the edge/surface of CDs. A plausible mechanism in relation to the obtained results is proposed. This work provides insights on the opto-electro-tunability of CDs via N-doping.
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    Journal Title
    Advanced Powder Technology
    Volume
    33
    Issue
    5
    DOI
    https://doi.org/10.1016/j.apt.2022.103560
    Funder(s)
    ARC
    Grant identifier(s)
    DP200101105
    Copyright Statement
    © 2022 Elsevier. Licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International Licence (http://creativecommons.org/licenses/by-nc-nd/4.0/) which permits unrestricted, non-commercial use, distribution and reproduction in any medium, providing that the work is properly cited.
    Note
    This publication has been entered in Griffith Research Online as an advanced online version.
    Subject
    Carbon dots
    Nitrogen doping
    Photoluminescent nanoparticles
    Hall effect measurement
    Photoluminescence mechanism
    Publication URI
    http://hdl.handle.net/10072/414278
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