Issue 2, 2023

Broadband absorption and light-energy transfer in a phenyl-core thiophene dendrimer with multiple π-conjugations

Abstract

π-Conjugated dendrimers, with unique optical properties, have the potential to be used as light-harvesting antenna in organic solar cells and photodetectors. Here, the broadband absorption and light-energy transfer in a phenyl-core thiophene dendrimer, Ph-(7T)3, have been investigated using quantum calculations and absorption, photoluminescence, and excitation spectroscopy. The broadband absorption of the highly branched Ph-(7T)3 macromolecule could be attributed to multiple π-conjugations in Ph-(7T)3 (due to phenylthiophene and thiophene oligomers with different numbers of thiophene units). The divergency of the wavelengths between photoluminescence and excitation light indicated that the multiple π-conjugating system exhibited various modes of excited-state relaxation, which could explain the light-energy transfer from the core to the thiophene dendrons. The fluorescent quantum yield and lifetime of this molecular system are also presented.

Graphical abstract: Broadband absorption and light-energy transfer in a phenyl-core thiophene dendrimer with multiple π-conjugations

Supplementary files

Article information

Article type
Paper
Submitted
27 Jul 2022
Accepted
13 Dec 2022
First published
17 Jan 2023
This article is Open Access
Creative Commons BY-NC license

Mol. Syst. Des. Eng., 2023,8, 189-194

Broadband absorption and light-energy transfer in a phenyl-core thiophene dendrimer with multiple π-conjugations

M. Yamagishi, S. Horike, Y. Koshiba, A. Mori and K. Ishida, Mol. Syst. Des. Eng., 2023, 8, 189 DOI: 10.1039/D2ME00157H

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