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Rational design for the microplasma synthesis from vitamin B9 to N-doped carbon quantum dots towards selected applications
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Pho, Quoc Hue, Lin, LiangLiang, Tran, Nam Nghiep, Tran, Tung T., Nguyen, An Hoa, Losic, Dusan, Rebrov, Evgeny V. and Hessel, Volker (2022) Rational design for the microplasma synthesis from vitamin B9 to N-doped carbon quantum dots towards selected applications. Carbon, 198 . pp. 22-33. doi:10.1016/j.carbon.2022.07.004 ISSN 0008-6223.
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Official URL: http://dx.doi.org/10.1016/j.carbon.2022.07.004
Abstract
N-doped carbon quantum dots (NCQD) are rationally designed and synthesised, for the first time, from folic acid (Vitamin B9) by a non-thermal microplasma jet. A new conceptual design was developed to synthesise the desirable NCQD for three main applications (nanopesticides, water purification, and theranostic treatment). The structural and analytical characterisation confirmed an average size of 3.1 nm for the synthesised NCQD with the multi-functional groups (-OH, –COOH, –NH2) on their surface. The TEM results indicated that the core of NCQD was a multilayered structure, including single defected graphene sheets of graphitic-nitrogen and pyrrolic-nitrogen. In addition, fluorescence performance and stability of the as-prepared NCQD were determined. The quantum yield of NCQD was 35%, which is relatively high, with a strong blue fluorescence. A basis for predicting colloidal behaviours based on balancing molecular attractive and repulsive forces was elucidated by applying the Derjaguin, Landau, Vervey, and Overbeek (DLVO) theory. Finally, compared with other similar microplasma-assisted synthesis processes, this developed method has proven the ability to provide a tailored and scalable synthesis process of high-quantum-yield NCQD at gram-scale production.
Item Type: | Journal Article | ||||||||
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Divisions: | Faculty of Science, Engineering and Medicine > Engineering > Engineering | ||||||||
Journal or Publication Title: | Carbon | ||||||||
Publisher: | Pergamon | ||||||||
ISSN: | 0008-6223 | ||||||||
Official Date: | 15 October 2022 | ||||||||
Dates: |
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Volume: | 198 | ||||||||
Page Range: | pp. 22-33 | ||||||||
DOI: | 10.1016/j.carbon.2022.07.004 | ||||||||
Status: | Peer Reviewed | ||||||||
Publication Status: | Published | ||||||||
Access rights to Published version: | Restricted or Subscription Access |
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