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Self-assembly of emissive supramolecular rosettes with increasing complexity using multitopic terpyridine ligands

机译:使用多主题三联吡啶配体的自组装超分子发光花环的复杂性不断提高

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Coordination-driven self-assembly has emerged as a powerful bottom-up approach to construct various supramolecular architectures with increasing complexity and functionality. Tetraphenylethylene (TPE) has been incorporated into metallo-supramolecules to build luminescent materials based on aggregation-induced emission. We herein report three generations of ligands with full conjugation of TPE with 2,2′:6′,2″-terpyridine (TPY) to construct emissive materials. Due to the bulky size of TPY substituents, the intramolecular rotations of ligands are partially restricted even in dilute solution, thus leading to emission in both solution and aggregation states. Furthermore, TPE-TPY ligands are assembled with Cd(II) to introduce additional restriction of intramolecular rotation and immobilize fluorophores into rosette-like metallo-supramolecules ranging from generation 1–3 (G1?G3). More importantly, the fluorescent behavior of TPE-TPY ligands is preserved in these rosettes, which display tunable emissive properties with respect to different generations, particularly, pure white-light emission for G2.
机译:协调驱动的自组装已成为一种强大的自下而上的方法,可用来构建复杂性和功能性不断提高的各种超分子体系结构。四苯乙烯(TPE)已被掺入金属超分子中,以基于聚集诱导的发射来构建发光材料。我们在本文中报道了三代配体,它们与TPE与2,2':6',2''-吡啶(TPY)完全共轭以构建发射材料。由于TPY取代基的体积很大,即使在稀溶液中,配体的分子内旋转也受到部分限制,从而导致溶液状态和聚集状态的发射。此外,TPE-TPY配体与Cd(II)组装在一起,引入了分子内旋转的附加限制,并将荧光团固定在第1到3代(G1?G3)的玫瑰花状金属超分子中。更重要的是,这些花环中保留了TPE-TPY配体的荧光行为,这些花环相对于不同的世代显示出可调的发射特性,尤其是G2的纯白光发射。

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