Aerosol jet printed AgNW electrode and PEDOT:PSS layers for organic light-emitting diode devices fabrication

Hamjah MK, Steinberger M, Tam KC, Egelhaaf HJ, Brabec C, Franke J (2021)


Publication Type: Conference contribution

Publication year: 2021

Publisher: Institute of Electrical and Electronics Engineers Inc.

Conference Proceedings Title: 2021 14th International Congress: Molded Interconnect Devices, MID 2021 - Proceedings

ISBN: 9781728175096

DOI: 10.1109/MID50463.2021.9361616

Abstract

Aerosol jet printing is a cutting-edge technology offering a plethora of advantages in organic optoelectronics fabrication. In this work, we fabricated organic light-emitting diodes on glass substrates. Silver nanowires (AgNWs) and poly (3,4-ethylene dioxythiophene) polystyrene sulfonate (PEDOT:PSS) were aerosol-jet printed as the bottom electrode and hole transport layer, respectively. The other remaining layer materials were blade coated to form a multi-layered structure of the devices. The results show that the organic lightemitting diode device with 40 mm2 active areas was successfully obtained. A comparison study of blade-coated organic light-emitting diode devices on indium tin oxide based electrode is also discussed. The results of this work show that aerosol jet printing technology enables fully solution-based fabrication of organic light-emitting diode devices.

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How to cite

APA:

Hamjah, M.K., Steinberger, M., Tam, K.C., Egelhaaf, H.J., Brabec, C., & Franke, J. (2021). Aerosol jet printed AgNW electrode and PEDOT:PSS layers for organic light-emitting diode devices fabrication. In 2021 14th International Congress: Molded Interconnect Devices, MID 2021 - Proceedings. Institute of Electrical and Electronics Engineers Inc..

MLA:

Hamjah, Mohd Khairulamzari, et al. "Aerosol jet printed AgNW electrode and PEDOT:PSS layers for organic light-emitting diode devices fabrication." Proceedings of the 14th International Congress Molded Interconnect Devices, MID 2021 Institute of Electrical and Electronics Engineers Inc., 2021.

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