Numerical Simulation of Electrical Model for Organic Light-Emitting Devices with Fluorescent Dopant in the Emitting Layer
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概要
- 論文の詳細を見る
We present a numerical model for the quantitative simulation of electrical characteristics for organic light-emitting devices (OLEDs) with fluorescent dopants in the host. We use drift-diffusion equations in terms of the electron and hole current densities coupled with the Poisson's equation. Compared with other models proposed in previous literature, we include charge carrier trapping and direct carrier recombination phenomena on the fluorescent dopants in the simulation. Furthermore, current density, charge distribution, and recombination data in the device are obtained from this numerical study. Results for several multilayer devices with different fluorescent dopant concentrations are presented in this article. On the basis of the experimental data of a typical doped device, we have found good agreement between the simulation results and the experimental results.
- Published by the Japan Society of Applied Physics through the Institute of Pure and Applied Physicsの論文
- 2005-11-15
著者
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Jong Yeung-dong
Ritdisplay Corporation
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Chang Yih
Ritdisplay Corporation
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Lee Chih-Chien
Department of Electronic Engineering, National Taiwan University of Science and Technology, Taipei 106, Taiwan, Republic of China
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Huang Ping-Tsung
RiTdisplay Corporation, No. 12 Kuanfu N. Rd., Hsin-Chu Industrial Park, Taiwan 303, Republic of China
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Chen Yen
RiTdisplay Corporation, No. 12 Kuanfu N. Rd., Hsin-Chu Industrial Park, Taiwan 303, Republic of China
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Hu Peir-Jy
RiTdisplay Corporation, No. 12 Kuanfu N. Rd., Hsin-Chu Industrial Park, Taiwan 303, Republic of China
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