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Jaekim Kim

Sungkyunkwan University · 工学

研究室紹介

Professor Jaekim Kim's research lab specializes in advanced optoelectronics and flexible electronics, focusing on the development of high-performance, stretchable, and multifunctional photodetectors using low-dimensional nanomaterials such as quantum dots and metal-oxide semiconductors. The lab pioneers innovative phototransistor arrays with wavelength discrimination, color selectivity, and mechanical flexibility for applications in wearable biosensors, soft robotics, and next-generation imaging systems. By integrating solution-processed nanomaterials with scalable fabrication techniques, the lab advances stretchable and high-density integrated circuits for future human-centric electronic systems. Their work also extends into intelligent transportation systems, applying deep reinforcement learning to autonomous aerial mobility platforms like eVTOL drones.

optoelectronicsflexible electronicsquantum dotsstretchable circuitsphotodetectors

Research Overview

Papers
475
Total Citations
5,905
Papers (5y)
95
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
95total
2022
2023
2024
2025
2026
Citations per year (5y)
1,092total
20222023202420252026

Selected Papers

15
1
Article|166 citations·2019
A skin-like two-dimensionally pixelized full-color quantum dot photodetector
Jaehyun Kim, Sung Min Kwon, Yeo Kyung Kang, Yong‐Hoon Kim, Myoung‐Jae Lee, Kwangjoon Han, Antonio Facchetti, Myung‐Gil Kim, Sung Kyu Park
SJR Q1Science AdvancesOA

) in a broad range of wavelengths (365 to 1310 nm). On the basis of these technologies, a wavelength discriminable phototransistor circuit array (>600 phototransistors) was implemented on a skin-like soft platform, which is expected to be a versatile and scalable approach for wide spectral image sensors and human-oriented biological devices.

Materials ChemistryMaterials Science
2
Review|93 citations·2020
Recent Progress of Quantum Dot‐Based Photonic Devices and Systems: A Comprehensive Review of Materials, Devices, and Applications
Jaehyun Kim, Seungho Song, Yong‐Hoon Kim, Sung Kyu Park
SJR Q1Small Structures

Recently, photonic technologies have attracted lots of interests in the demand of high‐performance sensor devices. In particular, multifunctional photodetectors based on low‐dimensional nanomaterials have enabled to address complex environmental conditions and data processing for wide range of emerging applications, such as soft robotics, biomedical devices, and neuromorphic computing hardware, translating into mechanically flexible platforms that can offer reliable information. Semiconducting q

Materials ChemistryMaterials Science
3
Article|70 citations·2008
Application of the ALE technique for underwater explosion analysis of a submarine liquefied oxygen tank
Jae‐Hyun Kim, Hyung-cheol Shin
SJR Q1Ocean Engineering
Aerospace EngineeringEngineering
4
Article|58 citations·2021
Distributed deep reinforcement learning for autonomous aerial eVTOL mobility in drone taxi applications
Won Joon Yun, Soyi Jung, Joongheon Kim, Jae‐Hyun Kim
SJR Q1ICT ExpressOA

The urban aerial mobility (UAM) system, such as drone taxi or air taxi, is one of future on-demand transportation networks. Among them, electric vertical takeoff and landing (eVTOL) is one of UAM systems that is for identifying the locations of passengers, flying to the positions where the passengers are located, loading the passengers, and delivering the passengers to their destinations. In this paper, we propose a distributed deep reinforcement learning where the agents are formulated as eVTOL

Aerospace EngineeringEngineering
5
Article|58 citations·2021
Vertically Stacked Full Color Quantum Dots Phototransistor Arrays for High‐Resolution and Enhanced Color‐Selective Imaging
Jaehyun Kim, Chanho Jo, Myung‐Gil Kim, Gyeong‐Su Park, Tobin J. Marks, Antonio Facchetti, Sung Kyu Park
SJR Q1Advanced Materials

Abstract Color‐selective multifunctional and multiplexed photodetectors have attracted considerable interest with the increasing demand for color filter‐free optoelectronics which can simultaneously process multispectral signal via minimized system complexity. The low efficiency of color‐filter technology and conventional laterally pixelated photodetector array structures often limit opportunities for widespread realization of high‐density photodetectors. Here, low‐temperature solution‐processed

Materials ChemistryMaterials Science
6
Article|56 citations·2024
Full integration of highly stretchable inorganic transistors and circuits within molecular-tailored elastic substrates on a large scale
Seung-Han Kang, Jeong‐Wan Jo, J. Lee, Sanghee Moon, Seung Bum Shin, Su Bin Choi, D.-S. Byeon, Jaehyun Kim, Myung‐Gil Kim, Yong‐Hoon Kim, Jong‐Woong Kim, Sung Kyu Park
SJR Q1Nature CommunicationsOA

Abstract The emergence of high-form-factor electronics has led to a demand for high-density integration of inorganic thin-film devices and circuits with full stretchability. However, the intrinsic stiffness and brittleness of inorganic materials have impeded their utilization in free-form electronics. Here, we demonstrate highly integrated strain-insensitive stretchable metal-oxide transistors and circuitry (442 transistors/cm 2 ) via a photolithography-based bottom-up approach, where transistor

Biomedical EngineeringEngineering
7
Review|49 citations·2023
Recent Advances in Low‐Dimensional Nanomaterials for Photodetectors
Jaehyun Kim, Junho Lee, Jong‐Min Lee, Antonio Facchetti, Tobin J. Marks, Sung Kyu Park
SJR Q1Small MethodsOA

New emerging low-dimensional such as 0D, 1D, and 2D nanomaterials have attracted tremendous research interests in various fields of state-of-the-art electronics, optoelectronics, and photonic applications due to their unique structural features and associated electronic, mechanical, and optical properties as well as high-throughput fabrication for large-area and low-cost production and integration. Particularly, photodetectors which transform light to electrical signals are one of the key compon

Materials ChemistryMaterials Science
8
Article|40 citations·2018
Synthesis of powdered and granular N -(3-trimethoxysilylpropyl)diethylenetriamine-grafted mesoporous silica SBA-15 for Cr(VI) removal from industrial wastewater
Jae‐Hyun Kim, Jin-Kyu Kang, Seung-Chan Lee, Song-Bae Kim
SJR Q1Journal of the Taiwan Institute of Chemical Engineers
Water Science and TechnologyEnvironmental Science
9
Article|37 citations·2008
Performance Evaluation of Synchronous and Asynchronous MAC Protocols for Wireless Sensor Networks
Jae‐Hyun Kim, Jeongseok On, Seog-Gyu Kim, Jaiyong Lee

In the wireless sensor networks (WSNs), Synchronous approaches share the schedule information that specifies the cycle of active and sleep period by the control packets. On the other hand, asynchronous approaches do not exchange the synchronization information to send or receive data. Instead, they employ preamble sampling to do that. In this paper, we compare and analyze synchronous and asynchronous MAC protocols for WSNs with our two proposed schemes (AD-MAC and AS-MAC). Our proposed schemes p

Computer Networks and CommunicationsComputer Science
10
Article|36 citations·2015
Mobile Small Cells for Further Enhanced 5G Heterogeneous Networks
Choong‐Hee Lee, Sung‐Hyung Lee, Kwang‐Chun Go, Sung-Min Oh, Jae Sheung Shin, Jae‐Hyun Kim
SJR Q2ETRI JournalOA

A heterogeneous network (HetNet) is a network topology composed by deploying multiple HetNets under the coverage of macro cells (MCs). It can improve network throughput, extend cell coverage, and offload network traffic; for example, the network traffic of a 5G mobile communications network. A HetNet involves a mix of radio technologies and various cell types working together seamlessly. In a HetNet, coordination between MCs and small cells (SCs) has a positive impact on the performance of the n

Electrical and Electronic EngineeringEngineering
11
Article|34 citations·2017
Laboratory and pilot-scale field experiments for application of iron oxide nanoparticle-loaded chitosan composites to phosphate removal from natural water
Jae‐Hyun Kim, Song-Bae Kim, Sang-Hyup Lee, Jae‐Woo Choi
SJR Q2Environmental Technology

The aim of this study was to apply iron oxide nanoparticle-chitosan (ION-chitosan) composites to phosphate removal from natural water collected from the Seoho Stream in Suwon, Republic of Korea. Laboratory batch experiments showed that phosphate removal by the ION-chitosan composites was not sensitive to pH changes between pH values of 5.0 and 9.0. During six cycles of adsorption-desorption, the composites could be successfully regenerated with 5 mM NaOH solution and reused for phosphate removal

Industrial and Manufacturing EngineeringEnvironmental Science
12
Article|32 citations·2021
Large-Scale Water Quality Prediction Using Federated Sensing and Learning: A Case Study with Real-World Sensing Big-Data
Soohyun Park, Soyi Jung, Haemin Lee, Joongheon Kim, Jae‐Hyun Kim
SJR Q1SensorsOA

Green tide, which is a serious water pollution problem, is caused by the complex relationships of various factors, such as flow rate, several water quality indicators, and weather. Because the existing methods are not suitable for identifying these relationships and making accurate predictions, a new system and algorithm is required to predict the green tide phenomenon and also minimize the related damage before the green tide occurs. For this purpose, we consider a new network model using smart

Water Science and TechnologyEnvironmental Science
13
Article|28 citations·2020
Highly Efficient Photo-Induced Charge Separation Enabled by Metal–Chalcogenide Interfaces in Quantum-Dot/Metal-Oxide Hybrid Phototransistors
Jaehyun Kim, Sung Min Kwon, Chanho Jo, Jae Sang Heo, Won Bin Kim, Hyun Suk Jung, Yong‐Hoon Kim, Myung‐Gil Kim, Sung Kyu Park
SJR Q1ACS Applied Materials & Interfaces

Quantum dot (QD)-based optoelectronics have received great interest for versatile applications because of their excellent photosensitivity, facile solution processability, and the wide range of band gap tunability. In addition, QD-based hybrid devices, which are combined with various high-mobility semiconductors, have been actively researched to enhance the optoelectronic characteristics and maximize the zero-dimensional structural advantages, such as tunable band gap and high light absorption.

Materials ChemistryMaterials Science
14
Article|24 citations·2020
Deep Learning Based Successive Interference Cancellation Scheme in Nonorthogonal Multiple Access Downlink Network
Isaac Sim, Young Ghyu Sun, Donggu Lee, Soo Hyun Kim, Jiyoung Lee, Jae‐Hyun Kim, Jae‐Hyun Kim, Yoan Shin, Jin Young Kim, Jin Young Kim
SJR Q1EnergiesOA

In this paper, a deep learning-based successive interference cancellation (SIC) scheme for use in nonorthogonal multiple access (NOMA) communication systems is investigated. NOMA has become a notable technique in the field of mobile wireless communication because of its capacity to overcome orthogonality, unlike a conventional orthogonal frequency division multiple access (OFDMA) communication system. In NOMA communication systems, SIC is one of the decoding schemes applied at receivers for down

Electrical and Electronic EngineeringEngineering
15
Article|19 citations·2014
Performance evaluation of network coding in IEEE 802.11 wireless ad hoc networks
Kyu Hwan Lee, Sunghyun Cho, Jae‐Hyun Kim
SJR Q1Ad Hoc Networks
Computer Networks and CommunicationsComputer Science

Research Areas

Computer Networks and CommunicationsElectrical and Electronic EngineeringAerospace EngineeringComputer Vision and Pattern RecognitionArtificial IntelligenceMaterials Chemistry

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