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"Quantum efficiency"

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"Quantum efficiency"

Factors Limiting Power Conversion Efficiency in GaInN/GaN-Based μ-LEDs Investigated by Chip-Size and Temperature-Dependent Measurements
Hana Lim, Jiye Choi, Minji Ryu, Yejin Kim, Ilji Hwang, Dong-pyo Han
J Electr Electron Mater 2025;38(3):282-289.   Published online May 1, 2025
DOI: https://doi.org/10.4313/JKEM.2025.38.3.7
This study aimed to elucidate factors limiting power conversion efficiency (PCE) in GaN-based micro-light-emitting diodes (μ-LEDs). To this end, we investigated the effects of operating temperature and chip-size of μ-LEDs on their efficiency. For the investigation, 460 nm-emitting μ-LEDs with various chip-sizes were fabricated; then their characteristics were carefully measured from 100 to 400 K. As the chip-size decreases and the operating temperature increases, their PCE and external quantum efficiency (EQE) decrease, while voltage efficiency (VE) increases. This indicates that the EQE plays a more important role than the VE in determining the PCE of μ-LEDs. Particularly, for a chip-size of 20 × 20 μm2, the EQE was very lower and the ideality factor was unexpectedly higher compared to the others for all operating temperatures, which is believed to be due to the critical plasma damage at the sidewall during dry-etching process for the chip-size < 20 × 20 μm2.
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Quantum Efficiency Measurement and Analysis of Solar Cells
Youngkuk Kim, Donghyun Oh, Jinjoo Park, Junsin Yi
J Electr Electron Mater 2023;36(4):351-361.   Published online July 1, 2023
DOI: https://doi.org/10.4313/JKEM.2023.36.4.5
The purpose of this paper is to help those who research and develop solar cells in university laboratories and industrial sites understand the most basic and important quantum efficiency measurement and analysis method in analyzing solar cell performance. Starting with the definition of quantum efficiency, we calculate the theoretical current density according to the band gap of the solar cell material from the solar spectrum, along with a detailed introduction to the measurement and analysis methods, and measure and analyze the theoretical current density and quantum efficiency. We discuss in depth how to analyze the performance of solar cells through Quantum efficiency measurement and analysis of solar cells is a very useful method that can give intuition to solar cell performance analysis as it can analyze solar cells according to depth (front emitter, bulk, rear surface). Students and researchers who study solar cells with a deep understanding of theoretical current density and quantum efficiency measurement analysis are expected to use it as a basis for analyzing solar cell performance.
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Rcgular Paper : Display and Optical Devices ; Manufacturing of Cs3Sb Photocathode in Atmospheric Conditions
Hyo Soo Jeong
J Electr Electron Mater 2014;27(10):653-656.   Published online October 1, 2014
Cs3Sb photocathode was formed by newly developed process and successive in-situ lightingdevices were fabricated in a process chamber. R, G, and B phosphors were applied on the anode plate,respectively. Major parameters such as brightness, power consumption, and efficacy were measured. Thewavelength of LED excitation source was 450 nm. Both high power and low power modes were appliedin the measurement. Measurement values were clearly differentiated by the voltage application modes. The measured values of each parameter was good enough to be applied for general lighting source. Theresults showed that Cs3Sb photocathode formed in atmospheric conditions was functioning as good as thephotocathode formed in UHV conditions, and thus it could be applied to advanced lighting devices.
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Light Source and Application Technology : Modeling of Mixed Phosphors in White Light Emitting Diode
Do Woo Kim, Da Yeong Gong, Myeong Kook Gong
J Electr Electron Mater 2013;26(7):567-574.   Published online July 1, 2013
An optical model is proposed in the white LED using phosphor and LED chip. In this paper a new model that describes the absorption rate and quantum efficiency with increasing the mixing ratio of phosphor in silicone, and the allotment of the phosphor absorption optical power in the several phosphor mixing in the silicone. Single phosphor in silicone from the optical measurement data before and after molding, the solution to get the blue optical power and the phosphor emission optical power is proposed. By these solution the absorption rate and the quantum efficiency was obtained. The model with single phosphor mixing in the silicone the validity was confirmed.
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Efficiency Improvement of Organic Light-emitting Diodes depending on the Thickness Variation of BCP using Electron Transport Layer
Weon Jong Kim, Hyun Teak Shin, Jin Woong Hong
J Electr Electron Mater 2009;22(4):327-332.   Published online April 1, 2009
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Electrical properties of OLEDs due to the Hole-size of Crucible Boat and Deposition Rate of Hole Transport Layer
Weon Jong Kim, Hyun Teak Shin, Jong Yeol Shin, Jin Woong Hong
J Electr Electron Mater 2009;22(1):74-80.   Published online January 1, 2009
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Efficiency Improvement of OLEDs depending on the Hole-size of Crucible Boat
Weon Jong Kim, Jin Woong Hong
J Electr Electron Mater 2008;21(6):569-574.   Published online June 1, 2008
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Display,Optical Devices : LED Design using Resistor Network Model
J Electr Electron Mater 2008;21(1):73-78.   Published online January 1, 2008
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Display,Optical Deyiees : A Study on the Optical and Electrical Properties of the White-light-emitting Organic LED with Two-wavelength using DPVBi/Rubrene Structure
Hwan Sul O, Jae Yeong Jo, Seong Jin Choe, Myeong Gu Kang, Seog Beom Yun
J Electr Electron Mater 2004;17(2):217-222.   Published online February 1, 2004
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A Study on Current Blocking Configuration of V-Groove Quantum Wire Laser
Tae Ho Jo, Tae Geun Kim
J Electr Electron Mater 2003;16(12s):1268-1272.
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