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Scale-up Chemical Synthesis of Thermally-activated Delayed Fluorescence Emitters Based on the Dibenzothiophene-S,S-Dioxide Core
Published on: October 24, 2017
Synthesis and Electropolymerization of Seven-Membered BF2 Chromophores: Triphenylamine-Functionalized BOPYRENPY with
Edwin J Gonzalez Lopez1, Jhair C Leon Jaramillo2, Maribel López3
1School of Molecular Sciences, Arizona State University, Tempe, Arizona 85287, United States.
Abstract:
Two new seven-membered boron-difluoride chromophores, BOPYRENPY-TPA and BOPYRENPY-BTD-TPA, were synthesized as the first electroactive BOPYRENPY derivatives designed for electropolymerization. Both compounds incorporate terminal triphenylamine (TPA) donor groups, enabling film growth via oxidative coupling of TPA radical cations to form tetraphenylbenzidine (TPB). Incorporation of an electron-deficient benzothiadiazole (BTD) spacer in BOPYRENPY-BTD-TPA generates a donor-acceptor-donor (D-A-D) framework. Steady-state and time-resolved fluorescence measurements show that the BTD unit induces a blue-shifted emission (λem = 560 nm) with higher fluorescence quantum yield and longer excited-state lifetime (ΦF = 0.4, 2.8 ns), whereas BOPYRENPY-TPA emits at 590 nm with biexponential decay. Cyclic voltammetry reveals multiple redox processes, and continuous anodic cycling on transparent indium tin oxide electrodes produces homogeneous polymeric films. Spectroelectrochemical studies show reversible formation of TPB radical cations and dications, accompanied by color changes from orange (neutral) to green and bluish-green (oxidized). The resulting films exhibit rapid switching (2-3 s), high optical contrast (ΔT ≈ 75% at 750 nm), and excellent stability. This work represents the first electrosynthesized polymer derived from a seven-membered boron fluoride (BF2) ring system and establishes BOPYRENPY as a robust platform for BF2-based electrochromic materials.
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