settingsOrder Article ReprintsOpen AccessArticleFirst-Principles Modeling of Bottom-Up Synthesis of Carbon Quantum Dotsby Danil W. Boukhvalov 1,2,*ORCID andVladimir Yu. Osipov 3,*ORCID1College of Science, Institute of Materials Physics and Chemistry, Nanjing Forestry University, Nanjing 210037, China2Institute of Physics and Technology, Ural Federal University, Mira 19 Str., Yekaterinburg 620002, Russia3Ioffe Institute, Polytechnicheskaya 26, St. Petersburg 194021, Russia*Authors to whom correspondence should be addressed.Crystals 2023, 13(5), 716; https://doi.org/10.3390/cryst13050716Received: 7 April 2023 / Revised: 20 April 2023 / Accepted: 21 April 2023 / Published: 24 April 2023(This article belongs to the Section Crystal Engineering)Download Browse Figures Versions NotesAbstractIn this work, we report the results of various scenarios related to the initial stages in the assembly of carbon quantum dots (CQDs) from citric acid (CA) or o-phenylenediamine (OPD). The results of the step-by-step simulations of the synthesis demonstrate that all possible scenarios of CQD assembly are different from those previously proposed. For example, in synthesizing CQDs from citric acid, each addition of a new carbon ring to the growing nanographene leads to the appearance of the carbonyl (C=O) groups on the edges and carboxyl (–COOH) groups in the interior parts of the nanographenes. Even the initial steps of CQD assembly from CA are accompanied by the formation of bushy structures from carboxyl and –CH2–COOH groups on the edges. On the other hand, in manufacturing CQDs from OPD, the formation of flat nanographenes is extremely energetically favorable. This result is in qualitative agreement with a very high yield of synthesized CQDs from OPD. However, the discussed process of nanographene formation proceeds simultaneously with the oxidation of newly formed nanographenes in a medium of superheated water accompanied by the appearance of C–OH bonds in the internal parts of newly formed sp2- carbon species or even in their etching. For both cases, the scenario of eliminating excessive carboxyl or hydroxyl groups by forming interlayer C–C bonds between two adjacent nanographenes is estimated as possible.
Original languageEnglish
Article number716
JournalCrystals
Volume13
Issue number5
DOIs
Publication statusPublished - 2023

    WoS ResearchAreas Categories

  • Crystallography
  • Materials Science, Multidisciplinary

    ASJC Scopus subject areas

  • Condensed Matter Physics
  • General Chemical Engineering
  • Inorganic Chemistry
  • General Materials Science

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