Circularly Polarized Luminescence of [6]Helicenes through Excited- State Intramolecular Proton Transfer
Metadata
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Göbel, Dominik; Míguez Lago, Sandra; Ruedas Rama, María José; Orte Gutiérrez, Ángel; González Campaña, AraceliEditorial
Wiley
Materia
Chirality Circularly polarized luminescence Excited-state intramolecular proton transfer Helicene Luminescence Proton transfer
Date
2022-02-17Referencia bibliográfica
D. Göbel... [et al.]. Circularly Polarized Luminescence of [6]Helicenes through Excited- State Intramolecular Proton Transfer. Helv. Chm. Acta 2022, 105, e202100221. [doi.org/10.1002/hlca.202100221]
Sponsorship
European Research Council (ERC) 716139 677023; Swiss National Science Foundation (SNSF) PP00P2_170534 PP00P2_198900; Deutscher Akademischer Austausch Dienst (DAAD); University of Zurich; MCIN/AEI FEDER "Una manera de hacer Europa" PGC2018-101181-B-I00; FEDER/Junta de Andalucia-Consejeria de Transformacion Economica, Industria, Conocimiento y Universidades A-FQM-230-UGR20Abstract
We present the concept of combining circularly polarized luminescence (CPL) and excited-state intramolecular proton transfer (ESIPT) features into a single molecule as a strategy to generate high-performance ESIPT-based CPL materials. For this purpose, a [6]helicene bearing two ESIPT structural units was synthesized using a double Suzuki-Miyaura reaction and a double C(sp(2))-H hydroxylation approach. The photophysical properties of the doubly hydroxylated [6]helicene were studied in parallel with a non-hydroxylated [6]helicene control compound, revealing that the presence of a chiral [6]helicene unit results in a strong CPL response and the presence of the ESIPT units in a considerable red shift. The red-shifted emission along with the outstanding g(lum) (approximate to 10(-2)) and a large Stokes shift makes the doubly hydroxylated [6]helicene a promising candidate for use in optoelectronics.