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Vacuum-free lamination of low work function cathode for efficient solution-processed organic light-emitting diodes
Journal article   Peer reviewed

Vacuum-free lamination of low work function cathode for efficient solution-processed organic light-emitting diodes

Yu-Fan Chang, Chun-Yu Chen, Fang-Tsai Luo, Yu-Chiang Chao, Hsin-Fei Meng, Hsiao-Wen Zan, Hao-Wu Lin, Sheng-Fu Horng, Teng-Chih Chao, Han-Cheng Yeh, …
Organic Electronics: physics, materials, applications, Vol.13(3), pp.388-393
03/2012

Abstract

Lamination Low work function Polyethylene glycol
The low work function cathode of blade-coated organic light-emitting diode is transferred from a soft polydimethylsiloxane (PDMS) mold by lamination without vacuum. The cathode is a bilayer of polyethylene glycol (PEG) (<10 nm) and Al (100 nm). A sacrificial layer of polystyrene with low Mw 1500 and melting point of 120°C is inserted between the cathode and PDMS for the subsequent mold removal at 150°C by melting polystyrene. Current efficiency of 3 cd/A (1.1%) and luminance of 2500 cd/m <sup>2</sup> are achieved for green polyfluorene fluorescent emitter. 25 cd/A (8.2%) and 3200 cd/m <sup>2</sup> are achieved for green phosphorescent tris[2-(p-tolyl)pyridine]iridium(III) (Ir(mppy) <sub>3</sub> ) emitter in polymer blend host. The efficiency is about 70% of the devices with thermally evaporated cathode. The turn-on voltage is about 5 V higher. © 2011 Elsevier B.V. All rights reserved.

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