Institut für Anorganische Chemie and, Institute for Sustainable Chemistry & Catalysis with Boron (ICB), Julius-Maximilians-Universität Würzburg, Am Hubland, 97074, Würzburg, Germany.
Institut für Organische Chemie, Julius-Maximilians-Universität Würzburg, Am Hubland, 97074, Würzburg, Germany.
Chemistry. 2020 Jan 7;26(2):438-453. doi: 10.1002/chem.201904219. Epub 2019 Nov 19.
We synthesized new pyrene derivatives with strong bis(para-methoxyphenyl)amine donors at the 2,7-positions and n-azaacene acceptors at the K-region of pyrene. The compounds possess a strong intramolecular charge transfer, leading to unusual properties such as emission in the red to NIR region (700 nm), which has not been reported before for monomeric pyrenes. Detailed photophysical studies reveal very long intrinsic lifetimes of >100 ns for the new compounds, which is typical for 2,7-substituted pyrenes but not for K-region substituted pyrenes. The incorporation of strong donors and acceptors leads to very low reduction and oxidation potentials, and spectroelectrochemical studies show that the compounds are on the borderline between localized Robin-Day class-II and delocalized Robin-Day class-III species.
我们合成了新的芘衍生物,在 2,7-位具有强双(对甲氧基苯基)胺供体,在芘的 K-区具有 n-杂环芳烃受体。这些化合物具有强烈的分子内电荷转移,导致不寻常的性质,如在红色到近红外区域(700nm)发射,这以前在单体芘中没有报道过。详细的光物理研究表明,新化合物具有超过 100ns 的非常长的固有寿命,这对于 2,7-取代的芘是典型的,但对于 K-取代的芘则不是。强供体和受体的掺入导致非常低的还原和氧化电位,光谱电化学研究表明,这些化合物处于局域罗宾-戴(Robin-Day)第二类和离域罗宾-戴(Robin-Day)第三类物种的边界。