Micro (Nov 2023)

Effect of Complexation with <i>Closo</i>-Decaborate Anion on Photophysical Properties of Copolyfluorenes Containing Dicyanophenanthrene Units in the Main Chain

  • Anton A. Yakimanskiy,
  • Ksenia I. Kaskevich,
  • Tatiana G. Chulkova,
  • Elena L. Krasnopeeva,
  • Serguei V. Savilov,
  • Vera V. Voinova,
  • Nikolay K. Neumolotov,
  • Andrey P. Zhdanov,
  • Anastasia V. Rogova,
  • Felix N. Tomilin,
  • Konstantin Yu. Zhizhin,
  • Alexander V. Yakimansky

DOI
https://doi.org/10.3390/micro3040063
Journal volume & issue
Vol. 3, no. 4
pp. 930 – 940

Abstract

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The functionalization of copolyfluorenes containing dicyanophenanthrene units by closo-decaborate anion is described. Target copolyfluorenes were analyzed using SEM, UV-vis, luminescence, NMR, and Fourier-transform infrared (FTIR) spectroscopy. The effect of complexation with the closo-decaborate anion on the photophysical properties was studied both experimentally and theoretically. The PL data indicate an efficient charge transfer from fluorene to the dicyanophenanthrene units coordinated to the closo-decaborate. The coordination of closo-decaborate clusters to the nitrile groups of copolyfluorenes provides an important route to new materials for sensors and light-emitting devices while, at the same time, serving as a platform for further study of the nature of boron clusters.

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