4.6 Article

Smooth and mechanically robust random metallic mesh electrode modified by thermally transferred PEDOT: PSS for ITO-Free flexible organic light-emitting diodes

期刊

ORGANIC ELECTRONICS
卷 106, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.orgel.2022.106498

关键词

Flexible transparent conductive electrode; Random metallic meshes; PEDOT:PSS transferring; Flexible organic light-emitting diode

资金

  1. National Science Basic Research Plan in Shaanxi Province of China [2019JLP-14]
  2. National Natural Science Foundation of China [61874086]
  3. Fundamental Research Funds for the Central Universities [xjh012019061]
  4. Xi?an Jiaotong University, Xi?an, China

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In this study, an RM-based flexible transparent conductive electrode (FTCE) using a thermally transferred PEDOT: PSS as a modification layer was reported. The transferred PEDOT:PSS modified RM exhibited low sheet resistance and high transmittance with a smooth surface. Furthermore, the modified RM showed improved mechanical robustness, making it more applicable in flexible OLEDs.
Indium-tin-oxide (ITO)-free flexible organic light-emitting diodes (OLEDs) have attracted lots of interest because the flexible ITO is severely restricted by its brittleness and the scarceness of indium. Random metallic mesh (RM) is believed as a competitive alternative for flexible ITO due to its high conductivity, good transparency as well as low cost for scale production. However, the rough surface and the poor mechanical durability still limit the application of RM for flexible OLEDs. Here, we reported an RM-based flexible transparent conductive electrode (FTCE) using a thermally transferred PEDOT: PSS as a modification layer. The transferred PEDOT:PSS modified RM exhibits a low sheet resistance of 10.6 Omega sq (-1) with an 82.5% transmittance at 550 nm. The thermally transferring process realized an in-plane structure RM, leading to a smooth surface with root-mean-square roughness of 2.5 nm. Furthermore, benefiting the thermally transferring process-induced polymers interdiffusion at the PEDOT:PSS/PET interface, the PEDOT:PSS modified RM exhibits improved mechanical robustness, achieving a low relative resistance increment of 16.5% after 10(5) times bending. An ITO-free flexible OLED was demonstrated by using the transferred PEDOT:PSS modified RM, exhibiting a good current efficiency of 54.7 cd/A, which is higher than that of the control device based on flexible ITO.

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