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Effect of Optical and Morphological Control of Single-Structured LEC Deviceopen access

Authors
Jeong, Woo JinLee, Jong IkKwak, Hee JungJeon, Jae MinShin, Dong YeolKang, Moon SungKim, Jun Young
Issue Date
Jul-2021
Publisher
MDPI
Keywords
light-emitting electrochemical cell; single-structure; thickness; heat treatment; morphology; EQE; stability; efficiency roll-off
Citation
MICROMACHINES, v.12, no.7
Indexed
SCIE
SCOPUS
Journal Title
MICROMACHINES
Volume
12
Number
7
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/3529
DOI
10.3390/mi12070843
ISSN
2072-666X
2072-666X
Abstract
We investigated the performance of single-structured light-emitting electrochemical cell (LEC) devices with Ru(bpy)(3)(PF6)(2) polymer composite as an emission layer by controlling thickness and heat treatment. When the thickness was smaller than 120-150 nm, the device performance decreased because of the low optical properties and non-dense surface properties. On the other hand, when the thickness was over than 150 nm, the device had too high surface roughness, resulting in high-efficiency roll-off and poor device stability. With 150 nm thickness, the absorbance increased, and the surface roughness was low and dense, resulting in increased device characteristics and better stability. The heat treatment effect further improved the surface properties, thus improving the device characteristics. In particular, the external quantum efficiency (EQE) reduction rate was shallow at 100 degrees C, which indicates that the LEC device has stable operating characteristics. The LEC device exhibited a maximum luminance of 3532 cd/m(2) and an EQE of 1.14% under 150 nm thickness and 100 degrees C heat treatment.
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