Liesfeld Pauline, Garmshausen Yves, Budzak Simon, Becker Jonas, Dallmann André, Jacquemin Denis, Hecht Stefan
Department of Chemistry & IRIS Adlershof, Humboldt-Universität zu Berlin, Brook-Taylor-Strasse 2, 12489, Berlin, Germany.
Department of Chemistry, Faculty of Natural Sciences, Matej Bel University, Tajovkého 40, 97401, Banská Bystrica, Slovakia.
Angew Chem Int Ed Engl. 2020 Oct 19;59(43):19352-19358. doi: 10.1002/anie.202008523. Epub 2020 Aug 26.
We present a strategy to achieve highly cooperative photoswitching, where the initial switching event greatly facilitates subsequent switching of the neighboring unit. By linking donor/acceptor substituted dihydropyrenes via suitable π-conjugated bridges, the quantum yield of the second photochemical ring-opening process could be enhanced by more than two orders of magnitude as compared to the first ring-opening. As a result, the intermediate mixed switching state is not detected during photoisomerization although it is formed during the thermal back reaction. Comparing the switching behavior of various dimers, both experimentally and computationally, helped to unravel the crucial role of the bridging moiety connecting both photochromic units. The presented dihydropyrene dimer serves as model system for longer cooperative switching chains, which, in principle, should enable efficient and directional transfer of information along a molecularly defined path. Moreover, our concept allows to enhance the photosensitivity in oligomeric and polymeric systems and materials thereof.
我们提出了一种实现高度协同光开关的策略,其中初始开关事件极大地促进了相邻单元的后续开关。通过合适的π共轭桥连接供体/受体取代的二氢芘,与第一次开环相比,第二次光化学开环过程的量子产率可提高两个多数量级。因此,尽管在热逆反应过程中会形成中间混合开关状态,但在光异构化过程中未检测到该状态。通过实验和计算比较各种二聚体的开关行为,有助于揭示连接两个光致变色单元的桥连部分的关键作用。所展示的二氢芘二聚体作为更长协同开关链的模型系统,原则上应能够沿着分子定义的路径进行高效且定向的信息传递。此外,我们的概念允许提高寡聚体和聚合物系统及其材料中的光敏性。