Browse > Article
http://dx.doi.org/10.3740/MRSK.2021.31.10.586

Model of Organic Light Emitting Device Emission Characteristics with Alternating Current Driving Method  

Seo, Jung Hyun (Department of Advanced Materials Science & Engineering, Daejin University)
Ju, Sung Hoo (Department of Advanced Materials Science & Engineering, Daejin University)
Publication Information
Korean Journal of Materials Research / v.31, no.10, 2021 , pp. 586-591 More about this Journal
Abstract
This paper proposes a mathematical model that can calculate the luminescence characteristics driven by alternating current (AC) power using the current-voltage-luminance (I-V-L) properties of organic light emitting devices (OLED) driven by direct current power. Fluorescent OLEDs are manufactured to verify the model, and I-V-L characteristics driven by DC and AC are measured. The current efficiency of DC driven OLED can be divided into three sections. Region 1 is a section where the recombination efficiency increases as the carrier reaches the emission layer in proportion to the increase of the DC voltage. Region 2 is a section in which the maximum luminous efficiency is stably maintained. Region 3 is a section where the luminous efficiency decreases due to excess carriers. Therefore, the fitting equation is derived by dividing the current density and luminance of the DC driven OLED into three regions, and the current density and luminance of the AC driven OLED are calculated from the fitting equation. As a result, the measured and calculated values of the AC driving I-V-L characteristics show deviations of 4.7% for current density, 2.9 % for luminance, and 1.9 % for luminous efficiency.
Keywords
OLED; I-V-L; model; alternating current; emission;
Citations & Related Records
Times Cited By KSCI : 2  (Citation Analysis)
연도 인용수 순위
1 C. W. Tang and S. A. Vanslyke, Appl. Phys. Lett., 51, 913 (1987).   DOI
2 J. Kido, M. Kimura and K. Nagai, Science, 267, 1332 (1995).   DOI
3 H.-D. Chun, H. Na and S.-H. Ju, J. Korean Inst. Electr. Electron. Mater. Eng., 26, 451 (2013).   DOI
4 J. H. Seo, J. H. Kim and S. H. Ju, J. Korean Inst. Electr. Electron. Mater. Eng., 27, 104 (2014).   DOI
5 D. Liu, F. Teng, Z. Xu, S. Yang, S. Quan, Q. He, Y. Wang and X. Xu, Solid State Commun., 137, 391 (2006).   DOI
6 Y. K. Shin, Signal and System, p. 401, Intervision, Seoul (2009).
7 J. H. Seo and S. H. Ju, J. Korean Inst. Surf. Eng. 50, 398 (2017).   DOI
8 T. Tsuboi, H. Murayama, S. J. Yeh and C. T. Chen, Opt. Mater., 29, 1299 (2007).   DOI