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Study of the potential of Eu3+ pyridine-2 6-dicarboxylic acid based complexes for application in OLEDs

机译:研究Eu3 +吡啶-2,6-二羧酸基复合物在OLED中的应用潜力

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摘要

The use of organolanthanide complexes as emitting centres in organic light emitting diodes (OLEDs) has been the focus of many studies over the last decade [1,2]. Many previous studies have focused on the use of B-diketonates as ligands from which energy transfer to the ion takes place, with an additional ligand to satisfy the coordination requirement of the lanthanide ions. In contrast to this approach we have carried research into the coordination of Eu3+ based on pyridine-2,6-dicarboxylic acid (DPA) ligands. In this case the coordination requirements of the Eu3+ ions are fully met by the 3 ligands thus reducing the deleterious quenching effects of neighbouring bonds including O-H.We have further modified these DPA ligands with the aim of studying the effect of halogenation and other modifications on the energy transfer from ligand to Eu3+ ion and on the non-radiative relaxation of the excited Eu3+ ion.Absorption, photoluminescence and photoluminescence-excitation spectra are reported for each of the modified complexes along with the 5D0 to 7F2 emission lifetime measured in a number of environments. We also present some preliminary Judd-Ofelt calculations on the complexes.The results of this study confirm that these ligands form highly stable complexes that easily dissolve in a number of solvents. Strong characteristic emission is observed at 615 nm with lifetimes ranging from 1.2 ms to 2.9 ms depending on depending on the ligand and solvent. The potential of these and further modified complexes for use in OLEDs is also discussed.
机译:在过去的十年中,使用有机镧系元素络合物作为有机发光二极管(OLED)的发射中心一直是许多研究的重点[1,2]。以前的许多研究都集中在使用B-二酮酸酯作为配体上,从该配体中将能量转移到离子上,另外还有一个配体可以满足镧系元素离子的配位要求。与这种方法相反,我们对基于吡啶-2,6-二羧酸(DPA)配体的Eu3 +的配位进行了研究。在这种情况下,3个配体完全满足了Eu3 +离子的配位要求,从而降低了邻键(包括OH)的有害猝灭作用。我们进一步修饰了这些DPA配体,目的是研究卤代和其他修饰对DPA的影响。能量从配体转移到Eu3 +离子上以及被激发的Eu3 +离子的非辐射弛豫状态。报告了每种修饰的配合物的吸收,光致发光和光致发光激发光谱以及在许多环境中测量的5D0至7F2发射寿命。我们还对复合物进行了初步的Judd-Ofelt计算,这项研究的结果证实了这些配体形成了高度稳定的复合物,可以轻松溶于多种溶剂中。根据配体和溶剂的不同,在615 nm处观察到强烈的特征发射,寿命为1.2 ms至2.9 ms。还讨论了这些以及进一步修饰的复合物用于OLED的潜力。

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