Institut für Organische Chemie and ‡Institut für Anorganische und Analytische Chemie, Technische Universität Braunschweig , Hagenring 30, 38106 Braunschweig, Germany.
J Am Chem Soc. 2017 Oct 25;139(42):15104-15113. doi: 10.1021/jacs.7b08176. Epub 2017 Oct 12.
A versatile and rapid access to various chain lengths of ethylene-bridged BODIPY motifs was discovered. Corresponding oligomers comprising up to eight monomeric units were studied with respect to their microstructures by photophysical, X-ray crystallographic, and computational means. The investigation of three different dipyrrin cores revealed a crucial dependence on the substitution pattern of the core, whereas the nature of the meso-periphery is less critical. The impact of substituent effects on the conformational space was investigated by Monte Carlo simulations and a set of DFT methods (B3LYP, PBEh-3c, TPSS/PWPB95), including dispersion effects. Cryptopyrrole-derived oligo-BODIPYs are characterized by a tight intramolecular arrangement triggering a dominant J-type excitonic coupling with red-shifts up to 45 nm, exceptionally small line widths of the absorption and emission event (up to 286 cm), outstandingly high attenuation coefficients (up to 1 042 000 M cm), and quantum yields of up to unity.
我们发现了一种通用且快速的方法,可以得到各种链长的乙烯桥联 BODIPY 基序。我们通过光物理、X 射线晶体学和计算手段研究了多达 8 个单体单元的相应寡聚物,以了解它们的微观结构。对三种不同二吡咯核心的研究表明,核心的取代模式起着关键作用,而中-外围的性质则不那么关键。通过 Monte Carlo 模拟和一系列 DFT 方法(B3LYP、PBEh-3c、TPSS/PWPB95),包括色散效应,研究了取代效应对构象空间的影响。由隐色吡咯衍生的寡聚 BODIPY 的特点是分子内排列紧密,引发了以 J 型为主的激子耦合,红移高达 45nm,吸收和发射事件的线宽极小(低至 286cm),衰减系数极高(高达 1042000Mcm),量子产率高达 1。