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Inkjet deposition of a hole-transporting small molecule to realize a hybrid solution-evaporation green top-emitting OLED

机译:喷墨沉积的空穴传输小分子,以实现混合溶液蒸发绿色顶部发射OLED

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摘要

The QUPD molecule has been deposited by inkjet printing as a hole-transport layer in top-emitting green OLEDs. A systematic study of the QUPD-based ink formulation has been done and different solvent mixtures have been investigated, in order to find the best composition (QUPD in toluene/IPA/anisole, 8/1/ 1 v/v/v) leading to the best film forming properties. Spin-coated PEDOT-PSS has been used as hole injecting layer. Subsequent layers have been deposited by vacuum sublimation. The resulting hybrid, solution-sublimation, OLEDs have been encapsulated by atomic layer deposition using Al_2O_3 material. In order to overcome the issue related to the thickness control of the organic layers deposited from solution, second order cavity length OLEDs have been fabricated by modifying the n-doped electron transport layer thickness. In that case, the relative OLED efficiency variation (10.5%) due to the thickness variation is far less compared to first order cavity length (34%) allowing a better reproducibility of the OLED fabrication. In the end, high efficiency (18 lm/W) green OLEDs of two different sizes, 0.44 cm~2 and 4 cm~2, have been fabricated, using an inkjet printed QUPD layer as hole transporting layer.
机译:QUPD分子已通过喷墨印刷沉积为顶部发射绿色OLED中的空穴传输层。为了找到最佳的成分(甲苯/ IPA /茴香醚中的QUPD,8/1/1 v / v / v),已经对基于QUPD的油墨配方进行了系统研究,并研究了不同的溶剂混合物。最佳的成膜性能。旋涂的PEDOT-PSS已被用作空穴注入层。随后的层已通过真空升华沉积。通过使用Al_2O_3材料通过原子层沉积来封装所得的混合,溶液升华型OLED。为了克服与从溶液沉积的有机层的厚度控制有关的问题,已经通过改变n型掺杂的电子传输层的厚度来制造二阶腔长OLED。在那种情况下,由于厚度变化引起的相对OLED效率变化(10.5%)与一阶腔体长度(34%)相比要小得多,从而可以实现OLED制造的更好的可重复性。最后,使用喷墨印刷的QUPD层作为空穴传输层,制造了两种尺寸分别为0.44 cm〜2和4 cm〜2的高效(18 lm / W)绿色OLED。

著录项

  • 来源
    《Organic Electronics》 |2017年第10期|24-32|共9页
  • 作者单位

    Universite Crenoble-Alpes, CEA, Leti, MINATEC Campus, 17 rue des Martyrs. F-38054, Grenoble Cedex 9, France,CEISAM - CNRS UMR 6230, Universite de Nantes, 2 rue is la Houssiniere, F-44322, Nantes, France;

    CEISAM - CNRS UMR 6230, Universite de Nantes, 2 rue is la Houssiniere, F-44322, Nantes, France;

    Universite Crenoble-Alpes, CEA, Leti, MINATEC Campus, 17 rue des Martyrs. F-38054, Grenoble Cedex 9, France;

    Universite Crenoble-Alpes, CEA, Leti, MINATEC Campus, 17 rue des Martyrs. F-38054, Grenoble Cedex 9, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    OLED; Solution-deposition technique; Inkjet printing thin-film encapsulation;

    机译:OLED;溶液沉积技术;喷墨印刷薄膜封装;
  • 入库时间 2022-08-18 01:38:35

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