Benchimol Elie, Ebbert Kristina E, Walther Alexandre, Holstein Julian J, Clever Guido H
Department of Chemistry and Chemical Biology, TU Dortmund University, Otto-Hahn-Strasse 6, 44227, Dortmund, Germany.
Chemistry. 2024 Aug 19;30(46):e202401850. doi: 10.1002/chem.202401850. Epub 2024 Jul 26.
Molecular building blocks, capable of adopting several strongly deviating conformations, are of particular interest in the development of stimuli-responsive self-assemblies. The pronounced structural flexibility of a short acridone-based bridging ligand, equipped with two monodentate isoquinoline donors, is herein exploited to assemble a surprisingly diverse series of coordination-driven Pd(II) architectures. First, it can form a highly twisted PdL helicate, transformable into the corresponding mesocate, controlled by temperature, counter anion and choice of solvent. Second, it also allows the formation of heteroleptic cages, either from a mix of ligands with Pd(II) cations or by cage-to-cage transformation from homoleptic assemblies. Here, the acridone-based ligand tolerates counter ligands that carry their donors either in a diverging or converging arrangement, as it can rotate its own coordination sites by 90° and structurally adapt to both situations via shape complementarity. Third, by a near 180° rotation of only one of its arms, the ligand can adopt an S-shape conformation and form an unprecedented C-symmetric PdL saw-toothed six-membered ring.
能够呈现几种显著不同构象的分子构建块,在刺激响应性自组装的发展中特别受关注。本文利用一种基于吖啶酮的短桥连配体的显著结构灵活性,该配体配备有两个单齿异喹啉供体,来组装一系列令人惊讶的多样化的配位驱动的钯(II)结构。首先,它可以形成一种高度扭曲的钯配体螺旋体,可通过温度、抗衡阴离子和溶剂的选择转化为相应的介孔体。其次,它还允许形成杂配体笼,要么由配体与钯(II)阳离子混合形成,要么通过同配体组装体的笼间转化形成。在这里,基于吖啶酮的配体能够容纳其供体呈发散或收敛排列的抗衡配体,因为它可以将自身的配位位点旋转90°,并通过形状互补在结构上适应这两种情况。第三,通过仅其一条臂的近180°旋转,该配体可以采用S形构象并形成前所未有的C对称钯配体锯齿状六元环。