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Nature of absorption bands in oxygen-functionalized graphitic carbon dots

  • Mária Sudolská
  • , Matúš Dubecký
  • , Sunandan Sarkar
  • , Claas J. Reckmeier
  • , Radek Zbořil
  • , Andrey L. Rogach
  • , Michal Otyepka*
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

Carbon dots (CDs) belong to a class of materials considered technologically important for their tunable absorption and emission properties and a huge application potential in cell labeling, theranostics, and optoelectronic technologies including LED diodes. Although improvement of their properties relies on a fundamental understanding of the underlying photophysical processes, this is currently far from complete. Here, we analyze the absorption spectra of nontrivial multilayer graphitic oxygen-functionalized CD models. The results suggested that the experimentally observed broad bands around 300 nm originated from n π∗ and π π∗ charge transfer transitions, whereas the effects of structural/energetic disorder, water environment, deprotonation, and excitonic coupling only weakly contributed to the spectra when compared to their monolayer counterparts. Owing to their weak interlayer interactions and thermal accessibility of low-energy conformations, the graphitic CDs are prone to structural disorder and consequent spectral-line broadening.
Original languageEnglish
Pages (from-to)13369-13373
JournalThe Journal of Physical Chemistry C
Volume119
Issue number23
Online published26 May 2015
DOIs
Publication statusPublished - 11 Jun 2015

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