Korea University · Medicine
Professor Young-Hoon Kim's research lab specializes in the development of advanced optoelectronic materials and devices, with a primary focus on metal-halide perovskites for next-generation light-emitting diodes (PeLEDs) and photovoltaics. The lab investigates fundamental materials properties such as charge transport, exciton dynamics, and interface engineering to enhance device efficiency and stability. Key research directions include the design of multifunctional electron and hole transport layers, colloidal perovskite nanocrystals with tunable optoelectronic properties, and the application of perovskite materials in both lighting and energy conversion technologies. The lab also explores the biological implications of oxidative stress in cardiac diseases, particularly atrial fibrillation, through molecular profiling of human myocardial tissues.
Figures are computed from collected data and may differ slightly.
Bright organic/inorganic hybrid perov-skite light-emitting diodes (PrLEDs) are realized by using CH3 NH3 PbBr3 as an emitting layer and self-organized buffer hole-injection layer (Buf-HIL). The PrLEDs show high luminance, current efficiency, and EQE of 417 cd m(-2) , 0.577 cd A(-1) , and 0.125%, respectively. Buf-HIL can facilitate hole injection into CH3 NH3 PbBr3 as well as block exciton quenching.
Twenty years after layer-type metal halide perovskites were successfully developed, 3D metal halide perovskites (shortly, perovskites) were recently rediscovered and are attracting multidisciplinary interest from physicists, chemists, and material engineers. Perovskites have a crystal structure composed of five atoms per unit cell (ABX<sub>3</sub>) with cation A positioned at a corner, metal cation B at the center, and halide anion X at the center of six planes and unique optoelectronic properti
Colloidal metal-halide perovskite quantum dots (QDs) with a dimension less than the exciton Bohr diameter D<sub>B</sub> (quantum size regime) emerged as promising light emitters due to their spectrally narrow light, facile color tuning, and high photoluminescence quantum efficiency (PLQE). However, their size-sensitive emission wavelength and color purity and low electroluminescence efficiency are still challenging aspects. Here, we demonstrate highly efficient light-emitting diodes (LEDs) based
Electron‐injecting interlayers (ILs) which are stable in air, inject electrons efficiently, block holes, and block quenching of excitons, are very important to realize efficient inverted polymer light‐emitting diodes (IPLEDs). Two air‐stable polymer electron‐injecting interlayers (ILs), branched polyethyleneimine (PEI) and polyethyleneimine ethoxylated (PEIE) for use in IPLEDs are introduced, and the roles of the ILs in IPLEDs comparing these with a conventional Cs 2 CO 3 IL are elucidated. Thes
Atrial Fibrillation (AF) is thought be caused by oxidative stress. Oxidative stress at the cellular level results from many factors, including exposure to alcohol, medications, cold, toxins or radiation. In this study we investigated gene transcriptional profiles on the human myocardial tissues from AF and oxidative stress conditions. Right atrial appendages were obtained from AF patients (n = 26) undergoing the Maze procedure, and from control patients (n = 26) who were in normal sinus rhythm a
Metal-halide perovskites (MHPs) are well suited to be vivid natural color emitters due to their superior optical and electrical properties, such as narrow emission linewidths, easily and widely tunable emission wavelengths, low material cost, and high charge carrier mobility. Since the first development of MHP light-emitting diodes (PeLEDs) in 2014, many researchers have tried to understand the properties of MHP emitters and the limitations to luminescence efficiency (LE) of PeLEDs, and have dev
We conclude that PM is important in the generation and maintenance of reentry during VT and VF.
Food in tourism is becoming an important subject to researchers in the field of tourism and food service. Food and its related tourist activities have been ascribed into a new category of tourism called food tourism in which the motivation for traveling is to obtain special experiences from food. However, limited attention has been paid to explore precisely what factors influence food tourists' destination choices. The purpose of this study was to develop an instrument to explore food tourists'
We have presented evidence that ventricular fibrillation is deterministic chaos arising from quasiperiodicity. The purpose of this study was to determine whether the transition from chaos (ventricular fibrillation, VF) to periodicity (ventricular tachycardia) through quasiperiodicity could be produced by the progressive reduction of tissue mass. In isolated and perfused swine right ventricular free wall, recording of single cell transmembrane potentials and simultaneous mapping (477 bipolar elec
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