Sršen Matea, Pedersen Stephan K, Rožić Tomislav, Lanza Arianna, Pittelkow Michael
Department of Chemistry, University of Copenhagen, Universitetsparken 5, Copenhagen Ø, DK2100, Denmark.
Angew Chem Int Ed Engl. 2025 Jul;64(29):e202506328. doi: 10.1002/anie.202506328. Epub 2025 May 27.
The promise of enhanced circularly polarized luminescence (CPL) from organic molecules has inspired synthetic efforts to prepare elongated multi-layer helicenes. It has proven particularly challenging to synthesize and isolate enantiomerically pure multi-turn helicenes, and consequently, clear guidelines for the molecular design of helicenes to achieve large CPL output remain elusive. We explore the oxidative dimerization of a 2-naphthol-annulated hetero[13]helicene, and observe the formation of two types of structurally distinct hetero[27]helicenes, both with four helical turns, form. With CuCl(OH)-TMEDA as the oxidant, a symmetric dimer (bi[13]) formed, joining two helicenes with the same helicity in their keto tautomeric forms. Using Cu(OTf)₂ as the oxidant led to an unsymmetrical [27]helicenoid composed by an (M)- and a (P)-enantiomer of the [13]helicene through an unusual coupling between the 1- and 3-positions of the 2-naphthol units. Structural characterization was achieved by NMR spectroscopy and single-crystal (X-ray or electron) diffraction analysis. The enantiomers of this [27]helicenoid were analyzed by electronic circular dichroism (ECD) and CPL measurements. The spectroscopic data were corroborated by DFT calculations, and the intense CPL output is preserved despite the presence of an (M)- and a (P)-helicene in the same molecule. These [27]helicenoids are the first isolated structures that feature helical π-systems with four helical turns.
有机分子增强圆偏振发光(CPL)的前景激发了人们合成细长多层螺旋烯的努力。事实证明,合成和分离对映体纯的多圈螺旋烯极具挑战性,因此,关于实现大CPL输出的螺旋烯分子设计的明确指导方针仍然难以捉摸。我们探索了一种2-萘酚环化的杂[13]螺旋烯的氧化二聚反应,并观察到形成了两种结构不同的杂[27]螺旋烯,二者均具有四个螺旋圈。以CuCl(OH)-TMEDA作为氧化剂,形成了一种对称二聚体(联[13]),将两个具有相同螺旋性的螺旋烯以其酮式互变异构形式连接起来。使用Cu(OTf)₂作为氧化剂导致形成了一种不对称的[27]螺旋enoid,它由[13]螺旋烯的一个(M)-对映体和一个(P)-对映体通过2-萘酚单元的1-位和3-位之间的异常偶联组成。通过核磁共振光谱和单晶(X射线或电子)衍射分析实现了结构表征。通过电子圆二色性(ECD)和CPL测量对这种[27]螺旋enoid的对映体进行了分析。光谱数据得到了密度泛函理论(DFT)计算的证实,并且尽管在同一分子中存在一个(M)-螺旋烯和一个(P)-螺旋烯,但仍保留了强烈的CPL输出。这些[27]螺旋enoid是首批分离得到的具有四个螺旋圈的螺旋π-体系的结构。