Physicochemical and Electronic Properties of Cationic [6]Helicenes: from Chemical and Electrochemical Stabilities to Far‐Red (Polarized) Luminescence |
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Authors: | Dr. Johann Bosson Geraldine M. Labrador Dr. Simon Pascal Dr. François‐Alexandre Miannay Oleksandr Yushchenko Haidong Li Dr. Laurent Bouffier Prof. Neso Sojic Roberto C. Tovar Prof. Gilles Muller Prof. Denis Jacquemin Dr. Adèle D. Laurent Dr. Boris Le Guennic Prof. Eric Vauthey Prof. Jérôme Lacour |
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Affiliation: | 1. Department of Organic Chemistry, University of Geneva, Quai Ernest Ansermet, Geneva 4, Switzerland;2. Department of Physical Chemistry, University of Geneva, Quai Ernest Ansermet, Geneva 4, Switzerland;3. ISM, UMR 5255, University of Bordeaux and CNRS, Talence, France;4. Department of Chemistry, San José State University, San José, CA, USA;5. CEISAM, UMR CNRS 6230, Faculté des Sciences et des Techniques, Université de Nantes, Nantes, France), Institut Universitaire de France, 1, rue Descartes, 75005 Paris Cedex 05 (France;6. Sciences Chimiques de Rennes UMR 6226, CNRS - Université de Rennes 1, Campus de Beaulieu, Rennes, France |
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Abstract: | The physicochemical properties of cationic dioxa ( 1 ), azaoxa ( 2 ), and diaza ( 3 ) [6]helicenes demonstrate a much higher chemical stability of the diaza adduct 3 (pKR+=20.4, =?0.72 V) compared to its azaoxa 2 (pKR+=15.2, =?0.45 V) and dioxa 1 (pKR+=8.8, =?0.12 V) analogues. The fluorescence of these cationic chromophores is established, and ranges from the orange to the far‐red regions. From 1 to 3 , a bathochromic shift of the lowest energy transitions (up to 614 nm in acetonitrile) and an enhancement of the fluorescence quantum yields and lifetimes (up to 31 % and 9.8 ns, respectively, at 658 nm) are observed. The triplet quantum yields and circularly polarized luminescence are also reported. Finally, fine tuning of the optical properties of the diaza [6]helicene core is achieved through selective and orthogonal post‐functionalization reactions (12 examples, compounds 4 – 15 ). The electronic absorption is modulated from the orange to the far‐red spectral range (560–731 nm), and fluorescence is observed from 591 to 755 nm with enhanced quantum efficiency up to 70 % (619 nm). The influence of the peripheral auxochrome substituents is rationalized by first‐principles calculations. |
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Keywords: | circularly polarized luminescence density functional calculations electrochemistry fluorescence helicenes |
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