Issue 45, 2023

Triphenylamine-based N,O-bidentate BF2 complexes: synthesis and photophysical properties

Abstract

In this contribution, we report the design and synthesis of two N,O-bidentate BF2 dyes (TTBKI-1 and TTBKI-2), with excellent optical properties like large Stokes shifts, strong solvatofluorochromism, and bright emission in solution, aggregated and solid states. Formation of a push–pull electron system resulted from the introduction of a triphenylamine unit as an excellent donor and a NBF2O moiety as an acceptor. Meanwhile, by further extending π-conjugation, the introduction of a thiophene unit resulted in a red-shift of absorption/emission wavelengths. Higher fluorescence quantum yields were obtained by TTBKI-1 and TTBKI-2 in nonpolar solvents. However, with an increase in the solvent polarity, a large bathochromic shift was observed in emission wavelengths but with a dramatic decrease in emission efficiency. Furthermore, as a typical aggregation-induced emission (AIE) unit, triphenylamine could reduce intermolecular π–π stacking in the aggregated state. TTBKI-1 and TTBKI-2 exhibited AIE properties in THF/H2O mixtures with high water fractions and showed bright solid-state emission.

Graphical abstract: Triphenylamine-based N,O-bidentate BF2 complexes: synthesis and photophysical properties

Supplementary files

Article information

Article type
Paper
Submitted
12 Sep 2023
Accepted
22 Oct 2023
First published
01 Nov 2023

New J. Chem., 2023,47, 20793-20799

Triphenylamine-based N,O-bidentate BF2 complexes: synthesis and photophysical properties

D. Yang and S. Li, New J. Chem., 2023, 47, 20793 DOI: 10.1039/D3NJ04270G

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