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Implementing fluorescent MOFs as downconverting layers in hybrid light- emitting diodes

机译:将荧光MOF实施为混合发光二极管中的下变频层

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One of the most important non-radiative relaxation processes that limits the quantum yield of a fluorophore is related to aggregation of the molecules in the solid-state causing excimer quenching. To limit this quenching mechanism, the fluorophore can be contained within a well-ordered 3D system that minimises aggregation through rigid bonds and spatial separation in a defined topological construct. Herein, the synthesis, characterisation and application as a down-converter of a new luminescent 3D material (MOF-BTBMBA) that incorporates a building block based on a benzothiadiazole (BT) derivative (BTBMBA) in a metal-organic framework (MOF) is presented. Notably, the photoluminescence quantum yield and hybrid LED performance are significantly improved for the MOF-based device compared to that prepared with the free ligand, highlighting the effectiveness of the rigid scaffold arrangement.
机译:限制荧光团的量子产率的最重要的非辐射弛豫过程之一与固态中的分子的聚集有关,导致准分子猝灭。 为了限制该淬火机构,荧光团可以包含在井有序的3D系统内,其通过刚性粘合和在限定的拓扑结构中最小化聚集和空间分离。 这里,作为一种新的发光3D材料(MOF-BTBMBA)的下变频器的合成,表征和应用,其包括基于金属 - 有机框架(MOF)中的苯并噻唑(BT)衍生物(BTBMBA)的建筑块是 提出了。 值得注意的是,与用自由配体制备的那样,基于MOF的装置显着改善了光致发光量子产率和混合LED性能,突出了刚性支架装置的有效性。

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