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Ligand Design for Luminescent Lanthanide-Containing Metallopolymers

机译:含镧系元素发光聚合物的配体设计

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摘要

The isolation of emissive materials with lanthanide ions is a topic of interest for imaging, display, and sensing applications, and it requires tuning of the electronics of the systems, such that, during the process of sensitization of the metal-centered luminescence, energy transfer from the sensitizer to the lanthanide ion is efficient and the resulting materials have the characteristics required for a given application. We discuss here our group's work in controlling the singlet-and triplet-state energies of sensitizing ligands through the choice of functional groups on the pyridine rings chelating to the lanthanide ions and show how we achieved progressively higher emission efficiencies. We describe targeted functionalization that led to highly emissive systems in solution and in the solid state and to new metallopolymers with norbornene or dicydopentadiene-based backbones and pyridinebis(oxazoline) pendants, which display red Eu-III-based, green Tb-III-based, and, for the first time, blue Tm-III-based emission.
机译:镧系离子与发光材料的隔离是成像,显示和传感应用的关注主题,它需要调整系统的电子器件,以便在以金属为中心的发光敏化过程中进行能量转移从敏化剂到镧系元素离子的合成是有效的,所得材料具有给定应用所需的特性。我们在这里讨论我们小组通过选择与镧系元素离子螯合的吡啶环上的官能团来控制敏化配体的单线态和三线态能量的工作,并说明我们如何逐步提高发射效率。我们描述了靶向功能化,该功能化导致溶液和固态中的高发射系统,以及具有降冰片烯或双环戊二烯基骨架和吡啶双(恶唑啉)侧基的新型金属聚合物,其显示出基于Eu-III的红色,基于Tb-III的绿色,并且是首次基于蓝色Tm-III的发射。

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