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Shortcut to Highly Fluorescent Perylene Derivatives: FromFluoranthene Fissure-Coupling to Late-Stage Aromatic Extension
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Access to extended perylene-based nanographenes (NGs) is severely limited and involves tedious multi-step synthetic procedures. Here a two-step synthesis shortcut to highly soluble, bent, and extended perylene-based NGs from a nonperylene aromatic homologation precursor is reported. Moreover, the resulting scaffold, tetraphenyldibenzoperiflanthene (DBP), is further extended by Pd-based postsynthetic ring fusion, taking advantage of the installation of an aminoquinoline directing group. The rational extension of the DBP scaffold allows synthesizing of highly NIR
fluorescent pure-red emitters (λem > 700 nm) with excellent quantum yields (ΦFI) up to 0.78. Thorough theoretical analysis sheds light on the correlation between λem, ΦFI, and scaffold molecular editing and extension, showcasing a rational design evolution process toward NGs with desired photophysical properties.
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CAPDEVILA, Lorena, SALA, Judith, BERGA, Cristina, AQUINO SAMPER, Araceli de, PARELLA, Teodor, BLANCAFORT, Lluís, RODRÍGUEZ RAURELL, Laura, SIMON, Sílvia, RIBAS, Xavi. Shortcut to Highly Fluorescent Perylene Derivatives: FromFluoranthene Fissure-Coupling to Late-Stage Aromatic Extension. _Chemistry Europe_. 2025. Vol. 3, núm. 1, pàgs. e202500102. [consulta: 18 de abril de 2026]. [Disponible a: https://hdl.handle.net/2445/228176]