Oleszak Christoph, Schol Peter R, Ritterhoff Christian L, Krug Marcel, Martin Max M, Bo Yifan, Meyer Bernd, Clark Timothy, Guldi Dirk M, Jux Norbert
Department of Chemistry and Pharmacy & Interdisciplinary Center for Molecular Materials (ICMM), Chair of Organic Chemistry II, Friedrich-Alexander-Universität Erlangen-Nürnberg, Nikolaus-Fiebiger-Str. 10, 91058, Erlangen, Germany.
Profile Center Solar Department of Chemistry and Pharmacy Interdisciplinary Center for Molecular Materials (ICMM), Chair of Physical Chemistry I, Friedrich-Alexander-Universität Erlangen-Nürnberg, Egerlandstr. 3, 91058, Erlangen, Germany.
Angew Chem Int Ed Engl. 2024 Nov 25;63(48):e202409363. doi: 10.1002/anie.202409363. Epub 2024 Oct 16.
A new clear-cut strategy for fusing N-heterocyclic and carbon-pure systems is introduced en route to a versatile platform of multi-purpose tetrapyrrolic chromophores. In particular, three novel C-C bond-fused porphyrin-hexabenzocoronene (HBC) conjugates were synthesized under oxidative cyclodehydrogenation conditions, starting from tailor-made nickel porphyrin precursors. The fusion of the individual aromatic systems via 5-membered rings led to highly soluble π-extended porphyrins in excellent yields. The resulting porphyrin-HBC conjugates exhibit absorption cross-sections that are of interdisciplinary interest in the ever-growing field of organic photovoltaics and near-infrared (NIR) dyes. Quantum chemical calculations show that the newly formed 5-membered rings induce biradicaloid character in the porphyrin core, which has a strong impact on excited state lifetimes. This is confirmed by a thorough optoelectronic and time-resolved characterization in order to understand these unique features better. Broadened absorption characteristics go hand-in-hand with short-lived excited states with up to six orders of magnitude faster decay rates.
在通往多功能四吡咯发色团通用平台的过程中,引入了一种用于融合氮杂环和纯碳体系的全新明确策略。特别地,从定制的镍卟啉前体出发,在氧化环脱氢条件下合成了三种新型的碳 - 碳键融合的卟啉 - 六苯并蔻(HBC)共轭物。通过五元环对各个芳香体系进行融合,以优异的产率得到了高度可溶的π - 扩展卟啉。所得的卟啉 - HBC共轭物展现出的吸收截面,在不断发展的有机光伏和近红外(NIR)染料领域具有跨学科的研究价值。量子化学计算表明,新形成的五元环在卟啉核心中诱导出双自由基特征,这对激发态寿命有强烈影响。为了更好地理解这些独特特性,通过全面的光电和时间分辨表征对这一点进行了证实。拓宽的吸收特性与短寿命的激发态相伴而生,其衰减速率快达六个数量级。