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Synthesis and photophysical studies of self-assembled multicomponent supramolecular coordination prisms bearing porphyrin faces

机译:自组装含卟啉面的多组分超分子配位棱镜的合成和光物理研究

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摘要

Multicomponent self-assembly, wherein two unique donor precursors are combined with a single metal acceptor instead of the more common two-component assembly, can be achieved by selecting Lewis-basic sites and metal nodes that select for heteroligated coordination spheres. Platinum(II) ions show a thermodynamic preference for mixed pyridyl/carboxylate coordination environments and are thus suitable for such designs. The use of three or more unique building blocks increases the structural complexity of supramolecules. Herein, we describe the synthesis and characterization of rectangular prismatic supramolecular coordination complexes (SCCs) with two faces occupied by porphyrin molecules, motivated by the search for new multichromophore complexes with promising light-harvesting properties. These prisms are obtained from the self-assembly of a 90° Pt(II) acceptor with a meso-substituted tetrapyridylporphyrin (TPyP) and dicarboxylate ligands. The generality of this self-assembly reaction is demonstrated using five dicarboxylate ligands, two based on a rigid central phenyl ring and three alkyl-spaced variants, to form a total of five free-base and five Zn-metallated porphyrin prisms. All 10 SCCs are characterized by 31P and 1H multinuclear NMR spectroscopy and electrospray ionization mass spectrometry, confirming the structure of each self-assembly and the stoichiometry of formation. The photophysical properties of the resulting SCCs were investigated revealing that the absorption and emission properties of the free-base and metallated porphyrin prisms preserve the spectral features associated with free TPyP.
机译:多组分自组装,其中两个独特的供体前体与单个金属受体结合而不是更常见的两组分组装,可以通过选择路易斯基位点和金属节点选择杂配配位球来实现。铂(II)离子对混合的吡啶基/羧酸盐配位环境表现出热力学偏好,因此适用于此类设计。使用三个或更多独特的构建基块会增加超分子的结构复杂性。在本文中,我们描述了由卟啉分子占据的两个面组成的矩形棱柱形超分子配位化合物(SCC)的合成和表征,其动机是寻找具有光吸收特性的新型多色团配合物。这些棱镜是从90°Pt(II)受体与内消旋取代的四吡啶基卟啉(TPyP)和二羧酸酯配体的自组装获得的。使用五个二羧酸酯配体(两个基于刚性中心苯环和三个烷基间隔的变体)形成总共五个自由碱和五个锌金属化卟啉棱柱,证明了这种自组装反应的普遍性。所有10个SCC的特征都是 31 P和 1 H多核NMR光谱学和电喷雾电离质谱,确认了每个自组装的结构和化学计量。研究了所得SCC的光物理性质,发现游离碱和金属化卟啉棱镜的吸收和发射性质保留了与游离TPyP相关的光谱特征。

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