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Elebjcho81

Korea Advanced Institute of Science and Technology · 工学

研究室紹介

Professor Elebjcho81's research lab specializes in advanced 2D materials and their applications in flexible and wearable electronic devices. Key research directions include the development of high-performance thermoelectric generators using flexible substrates, innovative gas sensors based on molybdenum disulfide (MoS2) and graphene heterostructures, and fundamental studies on graphene adhesion and electronic properties. The lab focuses on scalable fabrication techniques such as screen printing and chemical vapor deposition, with an emphasis on real-world applications in self-powered systems and next-generation electronics.

2D materialsflexible electronicsgas sensorsthermoelectric generatorsgraphene transfer

Research Overview

Papers
400
Total Citations
17,352
Papers (5y)
69
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
69total
2021
2022
2023
2024
2025
Citations per year (5y)
918total
20212022202320242025

Selected Papers

15
1
Article|930 citations·2014
A wearable thermoelectric generator fabricated on a glass fabric
Sun Jin Kim, Ju Hyung We, Byung Jin Cho
SJR Q1Energy & Environmental Science

The conversion of body heat into electrical energy using a thermoelectric (TE) power generator is useful for wearable self-powered mobile electronic systems such as medical sensors or smart watches. We herein demonstrate a glass fabric-based flexible TE generator using a screen printing technique and the self-sustaining structure of a TE device without top and bottom substrates. With this technique it is possible to make the device thin (∼500 μm), lightweight (∼0.13 g cm−2), and flexible. In add

Materials ChemistryMaterials Science
2
Article|636 citations·2015
Charge-transfer-based Gas Sensing Using Atomic-layer MoS2
Byungjin Cho, Myung Gwan Hahm, Minseok Choi, Jongwon Yoon, Ah Ra Kim, Young‐Joo Lee, Sung‐Gyu Park, Jung-Dae Kwon, Chang Su Kim, Myungkwan Song, Yongsoo Jeong, Kee‐Seok Nam
SJR Q1Scientific ReportsOA

Two-dimensional (2D) molybdenum disulphide (MoS2) atomic layers have a strong potential to be used as 2D electronic sensor components. However, intrinsic synthesis challenges have made this task difficult. In addition, the detection mechanisms for gas molecules are not fully understood. Here, we report a high-performance gas sensor constructed using atomic-layered MoS2 synthesised by chemical vapour deposition (CVD). A highly sensitive and selective gas sensor based on the CVD-synthesised MoS2 w

Materials ChemistryMaterials Science
3
Article|487 citations·2011
Organic Resistive Memory Devices: Performance Enhancement, Integration, and Advanced Architectures
Byungjin Cho, Sunghun Song, Yongsung Ji, Tae‐Wook Kim, Takhee Lee
SJR Q1Advanced Functional Materials

Abstract In recent years, organic resistive memory devices in which active organic materials possess at least two stable resistance states have been extensively investigated for their promising memory potential. From the perspective of device fabrication, their advantages include simple device structures, low fabrication costs, and printability. Furthermore, their exceptional electrical performances such as a nondestructive reading process, nonvolatility, a high ON/OFF ratio, and a fast switchin

Electrical and Electronic EngineeringEngineering
4
Article|466 citations·2015
Chemical Sensing of 2D Graphene/MoS2 Heterostructure device
Byungjin Cho, Jongwon Yoon, Sung Kwan Lim, Ah Ra Kim, Dong-Ho Kim, Sung‐Gyu Park, Jung-Dae Kwon, Young‐Joo Lee, Kyu Hwan Lee, Byoung Hun Lee, Heung Cho Ko, Myung Gwan Hahm
SJR Q1ACS Applied Materials & Interfaces

We report the production of a two-dimensional (2D) heterostructured gas sensor. The gas-sensing characteristics of exfoliated molybdenum disulfide (MoS2) connected to interdigitated metal electrodes were investigated. The MoS2 flake-based sensor detected a NO2 concentration as low as 1.2 ppm and exhibited excellent gas-sensing stability. Instead of metal electrodes, patterned graphene was used for charge collection in the MoS2-based sensing devices. An equation based on variable resistance terms

Materials ChemistryMaterials Science
5
Article|401 citations·2012
Direct Measurement of Adhesion Energy of Monolayer Graphene As-Grown on Copper and Its Application to Renewable Transfer Process
Taeshik Yoon, Woo Cheol Shin, Taek Yong Kim, Jeong Hun Mun, Taek‐Soo Kim, Byung Jin Cho, Taek‐Soo Kim, Byung Jin Cho
SJR Q1Nano Letters

Direct measurement of the adhesion energy of monolayer graphene as-grown on metal substrates is important to better understand its bonding mechanism and control the mechanical release of the graphene from the substrates, but it has not been reported yet. We report the adhesion energy of large-area monolayer graphene synthesized on copper measured by double cantilever beam fracture mechanics testing. The adhesion energy of 0.72 ± 0.07 J m(-2) was found. Knowing the directly measured value, we fur

Materials ChemistryMaterials Science
6
Article|364 citations·2012
Determination of Work Function of Graphene under a Metal Electrode and Its Role in Contact Resistance
Seung Min Song, Jong Kyung Park, One Jae Sul, Byung Jin Cho
SJR Q1Nano Letters

Although the work function of graphene under a given metal electrode is critical information for the realization of high-performance graphene-based electronic devices, relatively little relevant research has been carried out to date. In this work, the work function values of graphene under various metals are accurately measured for the first time through a detailed analysis of the capacitance-voltage (C-V) characteristics of a metal-graphene-oxide-semiconductor (MGOS) capacitor structure. In con

Materials ChemistryMaterials Science
7
Article|311 citations·2018
Self-Powered Wearable Electrocardiography Using a Wearable Thermoelectric Power Generator
Choong Kim, Hyeong Man Yang, Jinseok Lee, Gyu Soup Lee, Hyeongdo Choi, Yong Jun Kim, Se Hwan Lim, Seong Hwan Cho, Byung Jin Cho
SJR Q1ACS Energy Letters

A self-powered wearable electrocardiography (ECG) system is demonstrated. The ECG sensing circuit was fabricated on a flexible PCB and powered by a wearable thermoelectric generator (w-TEG) using body heat as the energy source. To allow the TEG to obtain a large temperature difference for high power generation and also be wearable, a polymer-based flexible heat sink (PHS) comprised of a superabsorbent polymer (SAP) and a fiber that promotes liquid evaporation was devised. Parametric studies on t

Biomedical EngineeringEngineering
8
Article|284 citations·2015
Synthesis of ultrathin polymer insulating layers by initiated chemical vapour deposition for low-power soft electronics
Hanul Moon, Hyejeong Seong, Woo Cheol Shin, Won‐Tae Park, Min‐Cheol Kim, Seungwon Lee, Jae Hoon Bong, Yong‐Young Noh, Byung Jin Cho, Seunghyup Yoo, Sung Gap Im
SJR Q1Nature Materials
Electrical and Electronic EngineeringEngineering
9
Article|251 citations·2016
High-Performance Flexible Thermoelectric Power Generator Using Laser Multiscanning Lift-Off Process
Sun Jin Kim, Han Eol Lee, Hyeongdo Choi, Yongjun Kim, Ju Hyung We, Ji Seon Shin, Keon Jae Lee, Byung Jin Cho
SJR Q1ACS Nano

Flexible thermoelectric generators (f-TEGs) are emerging as a semipermanent power source for self-powered sensors, which is an important area of research for next-generation smart network monitoring systems in the Internet-of-things era. We report in this paper a f-TEG produced by a screen-printing technique (SPT) and a laser multiscanning (LMS) lift-off process. A screen-printed TEG was fabricated on a SiO 2 /a-Si/quartz substrate via the SPT process, and the LMS process completely separated th

Materials ChemistryMaterials Science
10
Article|245 citations·2014
Hybrid composite of screen-printed inorganic thermoelectric film and organic conducting polymer for flexible thermoelectric power generator
Ju Hyung We, Sun Jin Kim, Byung Jin Cho
SJR Q1Energy
Materials ChemistryMaterials Science
11
Article|238 citations·2014
Graphene-based gas sensor: metal decoration effect and application to a flexible device
Byungjin Cho, Jongwon Yoon, Myung Gwan Hahm, Dong‐Ho Kim, Ah Ra Kim, Yung Ho Kahng, Sang‐Won Park, Young‐Joo Lee, Sung‐Gyu Park, Jung‐Dae Kwon, Chang Su Kim, Myungkwan Song
SJR Q1Journal of Materials Chemistry C

Synergistic combination of metal nanoparticles and graphene modulates electronic properties of graphene, leading to enhancement in gas sensitivity and selectivity.

Materials ChemistryMaterials Science
12
Article|237 citations·2012
Electromagnetic interference shielding effectiveness of monolayer graphene
Seul Ki Hong, Ki Yeong Kim, Taek Yong Kim, Jong‐Hoon Kim, Seong Wook Park, Joung Ho Kim, Byung Jin Cho
SJR Q2Nanotechnology

We report the first experimental results on the electromagnetic interference (EMI) shielding effectiveness (SE) of monolayer graphene. The monolayer CVD graphene has an average SE value of 2.27 dB, corresponding to ~40% shielding of incident waves. CVD graphene shows more than seven times (in terms of dB) greater SE than gold film. The dominant mechanism is absorption rather than reflection, and the portion of absorption decreases with an increase in the number of graphene layers. Our modeling w

Electronic, Optical and Magnetic MaterialsMaterials Science
13
Article|218 citations·2018
Structural design of a flexible thermoelectric power generator for wearable applications
C. S. Kim, Gyu Soup Lee, Hyeongdo Choi, Yong Jun Kim, Hyeong Man Yang, Se Hwan Lim, Sang‐Gug Lee, Byung Jin Cho
SJR Q1Applied Energy
Materials ChemistryMaterials Science
14
Article|189 citations·2009
Rewritable Switching of One Diode–One Resistor Nonvolatile Organic Memory Devices
Byungjin Cho, Tae‐Wook Kim, Sunghoon Song, Yongsung Ji, Minseok Jo, Hyunsang Hwang, Gun Young Jung, Takhee Lee
SJR Q1Advanced Materials

One diode–one resistor (1D–1R) hybrid-type devices consisting of an inorganic Schottky diode and an organic unipolar memory show electrically rewritable switching characteristics as well as rectifying properties. The 1D–1R array architecture improves the sensing efficiency of the array memory cell, ultimately creating the possibility for high-density integrated organic memory devices without restrictions due to cross-talk between cells.

Electrical and Electronic EngineeringEngineering
15
Article|189 citations·2017
Effect of Nb Doping on Chemical Sensing Performance of Two-Dimensional Layered MoSe2
Sun Young Choi, Yonghun Kim, Hee-Suk Chung, Ah Ra Kim, Jung‐Dae Kwon, Jucheol Park, Young Lae Kim, Se‐Hun Kwon, Myung Gwan Hahm, Byungjin Cho
SJR Q1ACS Applied Materials & Interfaces

Here, we report that Nb doping of two-dimensional (2D) MoSe 2 layered nanomaterials is a promising approach to improve their gas sensing performance. In this study, Nb atoms were incorporated into a 2D MoSe 2 host matrix, and the Nb doping concentration could be precisely controlled by varying the number of Nb 2 O 5 deposition cycles in the plasma enhanced atomic layer deposition process. At relatively low Nb dopant concentrations, MoSe 2 showed enhanced device durability as well as NO 2 gas res

Electrical and Electronic EngineeringEngineering

Research Areas

Electrical and Electronic EngineeringMaterials ChemistryElectronic, Optical and Magnetic MaterialsBiomedical EngineeringRenewable Energy, Sustainability and the EnvironmentMechanical Engineering

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