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Jae Hoon Lim

Sungkyunkwan University · Materials Science

About the Lab

Professor Jae Hoon Lim's research lab specializes in the development of high-performance, solution-processed quantum dot-based optoelectronic devices, with a primary focus on quantum dot light-emitting diodes (QLEDs) for next-generation displays and solid-state lighting. The lab pioneers advanced materials design—particularly core/shell heterostructured InP and CdSe-based quantum dots—with precise control over composition, morphology, and surface chemistry to achieve high efficiency, brightness, and stability under electrical and environmental stress. Key research directions include interface engineering for enhanced charge injection and balanced transport, structural optimization for suppressed Auger non-radiative recombination, and scalable printing techniques for full-color displays. The lab also emphasizes environmentally benign, heavy-metal-free QDs to enable sustainable and practical applications.

QLEDsquantum dotssolution-processed optoelectronicscore/shell heterostructuresdevice stability

Research Overview

Papers
178
Total Citations
9,291
Papers (5y)
39
Primary Field
Materials Science

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
39total
2022
2023
2024
2025
2026
Citations per year (5y)
336total
20222023202420252026

Selected Papers

15
1
Article|381 citations·2013
Highly Efficient Cadmium-Free Quantum Dot Light-Emitting Diodes Enabled by the Direct Formation of Excitons within InP@ZnSeS Quantum Dots
Jaehoon Lim, Myeongjin Park, Wan Ki Bae, Donggu Lee, Seonghoon Lee, Changhee Lee, Kookheon Char
SJR Q1ACS Nano

We demonstrate bright, efficient, and environmentally benign InP quantum dot (QD)-based light-emitting diodes (QLEDs) through the direct charge carrier injection into QDs and the efficient radiative exciton recombination within QDs. The direct exciton formation within QDs is facilitated by an adoption of a solution-processed, thin conjugated polyelectrolyte layer, which reduces the electron injection barrier between cathode and QDs via vacuum level shift and promotes the charge carrier balance w

Materials ChemistryMaterials Science
2
Article|307 citations·2017
Optical gain in colloidal quantum dots achieved with direct-current electrical pumping
Jaehoon Lim, Young‐Shin Park, Victor I. Klimov
SJR Q1Nature MaterialsOA
Materials ChemistryMaterials Science
3
Article|300 citations·2011
InP@ZnSeS, Core@Composition Gradient Shell Quantum Dots with Enhanced Stability
Jaehoon Lim, Wan Ki Bae, Donggu Lee, Min Ki Nam, Joohyun Jung, Changhee Lee, Kookheon Char, Seonghoon Lee
SJR Q1Chemistry of Materials

Utilizing the reactivity difference between TOPSe and TOPS, we synthesized InP@ZnSeS QDs with the composition gradient in a radial direction where ZnSe alleviated lattice strain and ZnS protected QDs from degradation so that we achieved QDs with high QE and photo/chemical stability. In terms of systematic investigation on the relationship between the shell nanostructure and QD stability, we demonstrated that QDs with thick gradient shells exhibited high QE and much enhanced stability against the

Materials ChemistryMaterials Science
4
Article|299 citations·2014
Influence of Shell Thickness on the Performance of Light‐Emitting Devices Based on CdSe/Zn1‐XCdXS Core/Shell Heterostructured Quantum Dots
Jaehoon Lim, Byeong Guk Jeong, Myeongjin Park, Jai Kyeong Kim, Jeffrey M. Pietryga, Young‐Shin Park, Victor I. Klimov, Changhee Lee, Doh C. Lee, Wan Ki Bae
SJR Q1Advanced Materials

CdSe/Zn1-X CdX S core/shell heterostructured quantum dots (QDs) with varying shell thicknesses are studied as the active material in a series of electroluminescent devices. "Giant" CdSe/Zn1-X CdX S QDs (e.g., CdSe core radius of 2 nm and Zn1-X CdX S shell thickness of 6.3 nm) demonstrate a high device efficiency (peak EQE = 7.4%) and a record-high brightness (>100 000 cd m(-2) ) of deep-red emission, along with improved device stability.

Materials ChemistryMaterials Science
5
Article|293 citations·2021
Bright and Stable Quantum Dot Light‐Emitting Diodes
Taesoo Lee, Byong Jae Kim, Hyunkoo Lee, Donghyo Hahm, Wan Ki Bae, Jaehoon Lim, Jeonghun Kwak
SJR Q1Advanced Materials

Abstract Quantum dot light‐emitting diodes (QLEDs) are one of the most promising candidates for next‐generation displays and lighting sources, but they are barely used because vulnerability to electrical and thermal stresses precludes high brightness, efficiency, and stability at high current density ( J ) regimes. Here, bright and stable QLEDs on a Si substrate are demonstrated, expanding their potential application boundary over the present art. First, a tailored interface is granted to the qu

Materials ChemistryMaterials Science
6
Article|274 citations·2018
Droop-Free Colloidal Quantum Dot Light-Emitting Diodes
Jaehoon Lim, Young‐Shin Park, Kaifeng Wu, Hyeong Jin Yun, Victor I. Klimov
SJR Q1Nano LettersOA

Colloidal semiconductor quantum dots (QDs) are a highly promising materials platform for implementing solution-processable light-emitting diodes (LEDs). They combine high photostability of traditional inorganic semiconductors with chemical flexibility of molecular systems, which makes them well-suited for large-area applications such as television screens, solid-state lighting, and outdoor signage. Additional beneficial features include size-controlled emission wavelengths, narrow bandwidths, an

Materials ChemistryMaterials Science
7
Article|139 citations·2012
Perspective on synthesis, device structures, and printing processes for quantum dot displays
Jaehoon Lim, Wan Ki Bae, Jeonghun Kwak, Seonghoon Lee, Changhee Lee, Kookheon Char
SJR Q2Optical Materials ExpressOA

Quantum dot-based light emitting diodes have extensively been investigated over the past two decades in order to utilize high color purity and photophysical stability of quantum dots. In this review, progresses on the preparation of quantum dots, structural design of electroluminescence devices using quantum dots, and printing processes for full-color quantum dot display will be discussed. The obstacles originating from the use of heavy metals, large hole injection barrier, and imperfect printin

Materials ChemistryMaterials Science
8
Article|90 citations·2012
Controlled Synthesis of CdSe Tetrapods with High Morphological Uniformity by the Persistent Kinetic Growth and the Halide-Mediated Phase Transformation
Jaehoon Lim, Wan Ki Bae, Ko Un Park, Lisa zur Borg, Rudolf Zentel, Seonghoon Lee, Kookheon Char
SJR Q1Chemistry of Materials

We report scalable controlled synthesis of CdSe tetrapods with high morphological uniformity based on the continuous precursor injection (CPI) approach with halide ligands. The CPI approach involves the successive injection of precursors into the seed solution at a controlled rate so that the reaction condition remains in the kinetic growth regime. To initiate the successful development of tetrapod structure, the controlled amount of halide ligands are added during the reaction, which triggered

Materials ChemistryMaterials Science
9
Article|81 citations·2019
Pushing the Efficiency Envelope for Semiconductor Nanocrystal-Based Electroluminescence Devices Using Anisotropic Nanocrystals
Whi Dong Kim, Dahin Kim, Da-Eun Yoon, Hyeonjun Lee, Jaehoon Lim, Wan Ki Bae, Doh C. Lee
SJR Q1Chemistry of Materials

Colloidal semiconductor nanocrystals hold great promise in display technologies, as the tunable energy levels and narrow emission bandwidth allow for wide gamut in color space. Impetus for energy-efficient, high-color-quality display has driven the surge of interest in electrically driven quantum dot-based light-emitting diodes (QD-LEDs). While extensive efforts have led to synthesis of QDs with near-unity photoluminescence quantum yield and fabrication of QD-LEDs with external quantum efficienc

Materials ChemistryMaterials Science
10
Review|70 citations·2020
Ligands as a universal molecular toolkit in synthesis and assembly of semiconductor nanocrystals
Hyeonjun Lee, Da-Eun Yoon, Sungjun Koh, Moon Sung Kang, Jaehoon Lim, Doh C. Lee
SJR Q1Chemical ScienceOA

Successful exploitation of semiconductor nanocrystals (NCs) in commercial products is due to the remarkable progress in the wet-chemical synthesis and controlled assembly of NCs. Central to the cadence of this progress is the ability to understand how NC growth and assembly can be controlled kinetically and thermodynamically. The arrested precipitation strategy offers a wide opportunity for materials selection, size uniformity, and morphology control. In this colloidal approach, capping ligands

Materials ChemistryMaterials Science
11
Article|57 citations·2021
Surface state-induced barrierless carrier injection in quantum dot electroluminescent devices
Hyeonjun Lee, Byeong Guk Jeong, Wan Ki Bae, Doh C. Lee, Jaehoon Lim
SJR Q1Nature CommunicationsOA

The past decade has witnessed remarkable progress in the device efficiency of quantum dot light-emitting diodes based on the framework of organic-inorganic hybrid device structure. The striking improvement notwithstanding, the following conundrum remains underexplored: state-of-the-art devices with seemingly unfavorable energy landscape exhibit barrierless hole injection initiated even at sub-band gap voltages. Here, we unravel that the cause of barrierless hole injection stems from the Fermi le

Materials ChemistryMaterials Science
12
Article|41 citations·2023
Heteroepitaxial chemistry of zinc chalcogenides on InP nanocrystals for defect-free interfaces with atomic uniformity
Yeongho Choi, Donghyo Hahm, Wan Ki Bae, Jaehoon Lim
SJR Q1Nature CommunicationsOA

Abstract Heteroepitaxy on colloidal semiconductor nanocrystals is an essential strategy for manipulating their optoelectronic functionalities. However, their practical synthesis typically leads to scattered and unexpected outcomes due to the intervention of multiple reaction pathways associated with complicated side products of reactants. Here, the heteroepitaxy mechanism of zinc chalcogenide initiated on indium phosphide (InP) colloidal nanocrystals is elucidated using the precursors, zinc carb

Materials ChemistryMaterials Science
13
Article|34 citations·2019
Nanostructured colloidal quantum dots for efficient electroluminescence devices
Wan Ki Bae, Jaehoon Lim
SJR Q2Korean Journal of Chemical Engineering
Materials ChemistryMaterials Science
14
Article|24 citations·2014
Modular Fabrication of Hybrid Bulk Heterojunction Solar Cells Based on Breakwater-like CdSe Tetrapod Nanocrystal Network Infused with P3HT
Jaehoon Lim, Donggu Lee, Myeongjin Park, Jiyun Song, Seonghoon Lee, Moon Sung Kang, Changhee Lee, Kookheon Char
SJR Q1The Journal of Physical Chemistry C

We demonstrate the modular fabrication of nanocrystal/polymer hybrid bulk heterojunction solar cells based on breakwater-like CdSe tetrapod (TP) nanocrystal networks infused with poly(3-hexylthiophene) (P3HT). This fabrication method consists of sequential steps for forming the hybrid active layers: the assembly of a breakwater-like CdSe TP network followed by nanocrystal surface modification and the infusion of semiconducting polymers. Such a modular approach enables the independent control of

Materials ChemistryMaterials Science
15
Article|24 citations·2006
Eosinophilic Infiltration in Korea: Idiopathic?
임재훈, 이경수

Research Areas

Materials ChemistryElectrical and Electronic EngineeringAerospace EngineeringBiomedical EngineeringCivil and Structural EngineeringPhysical and Theoretical Chemistry

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