Rationally designed cationic phospha-polyaromatic fluorophores were prepared through intramolecular cyclization of the tertiary ortho-(acene)phenylene-phosphines mediated by Cu(II) triflate. As a result of phosphorus quaternization, heterocyclic phosphonium salts 1âc-3âc, derived from naphthalene, phenanthrene, and anthracene cores, exhibited very intense blue to green fluorescence (Φ(em) =0.38-0.99) and high photostability in aqueous medium. The structure-emission relationship was further investigated by tailoring the electron-donating functions to the anthracene moiety to give dyes 4âc-6âc with charge-transfer character. The latter significantly decreases the emission energy to reach near-IR region. Thus, the intramolecular phosphacyclization renders an ultra-wide tuning of fluorescence from 420â nm (1âc) to 780â nm (6âc) in solution, extended to 825â nm for 6âc in the solid state with quantum efficiency of approximately 0.07. The physical behavior of these new dyes was studied spectroscopically, crystallographically, and electrochemically, whereas computational analysis was used to correlate the experimental data with molecular electronic structures. The excellent stability, water solubility, and attractive photophysical characteristics make these phosphonium heterocycles powerful tools in cell imaging.
Intramolecular Phosphacyclization: Polyaromatic Phosphonium P-Heterocycles with Wide-Tuning Optical Properties.
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作者:Belyaev Andrey, Chen Yi-Ting, Liu Zong-Ying, Hindenberg Philip, Wu Cheng-Ham, Chou Pi-Tai, Romero-Nieto Carlos, Koshevoy Igor O
| 期刊: | Chemistry | 影响因子: | 2.400 |
| 时间: | 2019 | 起止号: | 2019 May 2; 25(25):6332-6341 |
| doi: | 10.1002/chem.201900136 | ||
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