发色团
电致发光
材料科学
四苯乙烯
光化学
分子间力
背景(考古学)
薄膜
荧光
二苯胺
猝灭(荧光)
光电子学
图层(电子)
纳米技术
分子
化学
光学
有机化学
聚集诱导发射
古生物学
物理
冶金
生物
作者
Ritesh Haldar,Marius Jakoby,Mariana Kozłowska,Motiur Rahman Khan,Hongye Chen,Yohanes Pramudya,Bryce S. Richards,Lars Heinke,Wolfgang Wenzel,Fabrice Odobel,Stéphane Diring,Ian A. Howard,Uli Lemmer,Christof Wöll
标识
DOI:10.1002/chem.202003712
摘要
Several photophysical properties of chromophores depend crucially on intermolecular interactions. Thermally-activated delayed fluorescence (TADF) is often influenced by close packing of the chromophore assembly. In this context, the metal-organic framework (MOF) approach has several advantages: it can be used to steer aggregation such that the orientation within aggregated structures can be predicted using rational approaches. We demonstrate this design concept for a DPA-TPE (diphenylamine-tetraphenylethylene) chromophore, which is non-emissive in its solvated state due to vibrational quenching. Turning this DPA-TPE into a ditopic linker makes it possible to grow oriented MOF thin films exhibiting pronounced green electroluminescence with low onset voltages. Measurements at different temperatures clearly demonstrate the presence of TADF. Finally, this work reports that the layer-by-layer process used for MOF thin film deposition allows the integration of the TADF-DPA-TPE in a functioning LED device.
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