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Jae Won Jeong

Korea Advanced Institute of Science and Technology · Engineering

About the Lab

Professor Jae Won Jeong's research lab specializes in advanced nanoelectronics and functional materials, focusing on next-generation semiconductor devices and biosensors. Key research directions include the development of multi-value logic transistors using quantum confined transport and mobility edge quantization in zinc oxide-based nanostructures, ultrahigh-density resistive memory devices via block copolymer self-assembly, and novel 3D stacked FET architectures for extreme scaling. The lab also pioneers bio-integrated nanosensors using carbon nanomaterials and conjugated polymer blends for high-sensitivity, stable biosensing applications.

nanoelectronicsresistive memorymulti-value logicbiosensors3D FET

Research Overview

Papers
40
Total Citations
928
Papers (5y)
10
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
10total
2022
2023
2024
2025
2026
Citations per year (5y)
80total
20222023202420252026

Selected Papers

15
1
Article|130 citations·2019
Tunnelling-based ternary metal–oxide–semiconductor technology
Jae Won Jeong, Young-Eun Choi, Wooseok Kim, Jee-Ho Park, Sunmean Kim, Sunhae Shin, Kyuho Lee, Jiwon Chang, Seong‐Jin Kim, Kyung Rok Kim
SJR Q1Nature Electronics
Electrical and Electronic EngineeringEngineering
2
Article|109 citations·2019
ZnO composite nanolayer with mobility edge quantization for multi-value logic transistors
Lynn Lee, Jeongwoon Hwang, Jin Jung, Jongchan Kim, Ho-In Lee, Sunwoo Heo, Minho Yoon, Sungju Choi, Nguyen Van Long, Jinseon Park, Jae Won Jeong, Jiyoung Kim
SJR Q1Nature CommunicationsOA

A quantum confined transport based on a zinc oxide composite nanolayer that has conducting states with mobility edge quantization is proposed and was applied to develop multi-value logic transistors with stable intermediate states. A composite nanolayer with zinc oxide quantum dots embedded in amorphous zinc oxide domains generated quantized conducting states at the mobility edge, which we refer to as "mobility edge quantization". The unique quantized conducting state effectively restricted the

Electrical and Electronic EngineeringEngineering
3
Review|104 citations·2020
Carbon Nanomaterials as Versatile Platforms for Biosensing Applications
Hye Suk Hwang, Jae Won Jeong, Yoong Ahm Kim, Mincheol Chang
SJR Q2MicromachinesOA

A biosensor is defined as a measuring system that includes a biological receptor unit with distinctive specificities toward target analytes. Such analytes include a wide range of biological origins such as DNAs of bacteria or viruses, or proteins generated from an immune system of infected or contaminated living organisms. They further include simple molecules such as glucose, ions, and vitamins. One of the major challenges in biosensor development is achieving efficient signal capture of biolog

Electrical and Electronic EngineeringEngineering
4
Article|95 citations·2012
Self-Assembly-Induced Formation of High-Density Silicon Oxide Memristor Nanostructures on Graphene and Metal Electrodes
Woon Ik Park, Jong Moon Yoon, Moonkyu Park, Jinsup Lee, Sung Kyu Kim, Jae Won Jeong, Kyung-Ho Kim, Hu Young Jeong, Seokwoo Jeon, Kwang Soo No, Jeong Yong Lee, Yeon Sik Jung
SJR Q1Nano Letters

We report the direct formation of ordered memristor nanostructures on metal and graphene electrodes by a block copolymer self-assembly process. Optimized surface functionalization provides stacking structures of Si-containing block copolymer thin films to generate uniform memristor device structures. Both the silicon oxide film and nanodot memristors, which were formed by the plasma oxidation of the self-assembled block copolymer thin films, presented unipolar switching behaviors with appropriat

Electrical and Electronic EngineeringEngineering
5
Article|80 citations·1999
Kinematics and workspace analysis of a parallel wire mechanism for measuring a robot pose
Jae Won Jeong, Soo Hyun Kim, Yoon Keun Kwak
SJR Q1Mechanism and Machine Theory
Control and Systems EngineeringEngineering
6
Article|65 citations·2015
Compact Design of Low Power Standard Ternary Inverter Based on OFF-State Current Mechanism Using Nano-CMOS Technology
Sunhae Shin, Esan Jang, Jae Won Jeong, Byung‐Gook Park, Kyung Rok Kim
SJR Q2IEEE Transactions on Electron Devices

We propose a novel standard ternary inverter (STI) based on nanoscale CMOS technology for a compact design of multivalued logic. Using the gate bias independent OFF-state mechanisms of junction band-to-band tunneling (BTBT), tristate STI operation has been demonstrated in the conventional binary CMOS inverter by TCAD device and mixed-mode circuit simulation with 32-nm high-κ/metal-gate technology. Through analytical device modeling on BTBT and subthreshold current, static noise margin (SNM), off

Electrical and Electronic EngineeringEngineering
7
Article|37 citations·2019
Conjugated polymer/paraffin blends for organic field-effect transistors with high environmental stability
Solip Choi, Jae Won Jeong, Gyounglyul Jo, Byung Chol, Mincheol Chang
SJR Q1Nanoscale

High environmental stability of organic field-effect transistors is achieved by the use of conjugated polymer/paraffin blends.

Electrical and Electronic EngineeringEngineering
8
Article|37 citations·1998
Development of a parallel wire mechanism for measuring position and orientation of a robot end-effector
Jae Won Jeong, Soo Hyun Kim, Yoon Keun Kwak, Craig C. Smith
SJR Q1Mechatronics
Control and Systems EngineeringEngineering
9
Article|35 citations·2023
First demonstration of 3-dimensional stacked FET with top/bottom source-drain isolation and stacked n/p metal gate
Jaehyun Park, Wu-Kang Kim, Sung-Il Park, Jinchan Yun, Kyu‐Man Hwang, Jinwook Yang, Dahye Kim, Jae Won Jeong, Chuljin Yun, Jinho Bae, Jejune Park, Sam Park

We report world’s first demonstration of n- and pMOSFET in 3-Dimensional Stacked FET (3DSFET) with vertically stacked n/p metal gate and isolated source/drain between top and bottom FETs. We proved the possibility of 3DSFET with respect to area scaling not only by vertically stacking but also by reducing gate pitch down to 45 nm, which is the smallest dimension reported so far in 3DSFETs. The electrical properties of top/bottom placement has been studied to guide 3DSFET scheme design. Moreover,

Electrical and Electronic EngineeringEngineering
10
Article|33 citations·2017
A Novel Ternary Multiplier Based on Ternary CMOS Compact Model
Yesung Kang, Jae-Woo Kim, Sunmin Kim, Sunhae Shin, Esan Jang, Jae Won Jeong, Kyung Rok Kim, Seokhyeong Kang

Multiple-valued logic (MVL) has potential advantages for energy-efficient design by reducing a circuit complexity. Because of physical device and circuit realization issues, however, there are relatively small number of researches on MVL circuit designs. We design a novel ternary multiplier based on a ternary CMOS (T-CMOS) compact model. To estimate performance and energy efficiency of our ternary design, we construct a standard ternary-cell library and exploit a ternary static timing analysis (

Electrical and Electronic EngineeringEngineering
11
Article|33 citations·2018
Solvent Additive-Assisted Anisotropic Assembly and Enhanced Charge Transport of π-Conjugated Polymer Thin Films
Jae Won Jeong, Gyounglyul Jo, Solip Choi, Yoong Ahm Kim, Hyeonseok Yoon, Sang‐Wan Ryu, Jaehan Jung, Mincheol Chang
SJR Q1ACS Applied Materials & Interfaces

Charge transport in π-conjugated polymer films involves π-π interactions within or between polymer chains. Here, we demonstrate a facile solution processing strategy that provides enhanced intra- and interchain π-π interactions of the resultant polymer films using a good solvent additive with low volatility. These increased interactions result in enhanced charge transport properties. The effect of the good solvent additive on the intra- and intermolecular interactions, morphologies, and charge t

Electrical and Electronic EngineeringEngineering
12
Article|33 citations·2012
Enhanced Operational Space Formulation for Multiple Tasks by Using Time-Delay Estimation
Pyung Hun Chang, Jae Won Jeong
SJR Q1IEEE Transactions on Robotics

The operational space formulation (OSF) has been enhanced from a practical viewpoint through the application of the time-delay estimation (TDE). In principle, the OSF enables an excellent decentralized control owing to its ability to achieve dynamic consistency. In reality, however, it can suffer from modeling errors and relatively large computational demands. As a remedy for these problems, the OSF has been combined with the TDE, which is known for its accurate estimation of robot dynamics with

Mechanical EngineeringEngineering
13
Article|23 citations·2024
Highly manufacturable Self-Aigned Direct Backside Contact (SA-DBC) and Backside Gate Contact (BGC) for 3-dimensional Stacked FET at 48nm gate pitch
Jaehyun Park, Juhun Park, Kyu‐Man Hwang, Jinchan Yun, Dahye Kim, Sung-Il Park, Jejune Park, Jinwook Yang, Jae Won Jeong, Chuljin Yun, Jinho Bae, Sam Park

In this study, we have demonstrated 3-Dimensional Stacked FET (3DSFET) with Self-Aligned Direct Back-side Contact (SA-DBC) and Back-side Gate Contact (BGC) in 48nm gate pitch, which is the smallest dimension and the world's first demonstration reported so far. Simultaneous threshold voltage <tex xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">$(V_{t})$</tex> targeting for both n- and pFET in common gate and n/p-connection with vertical common contact wer

Electrical and Electronic EngineeringEngineering
14
Article|20 citations·2011
Sensorless and modeless estimation of external force using time delay estimation: application to impedance control
Jae Won Jeong, Pyung Hun Chang, Kyung Bin Park
SJR Q2Journal of Mechanical Science and Technology
Control and Systems EngineeringEngineering
15
Article|18 citations·2018
Large-Scale Alignment of Polymer Semiconductor Nanowires for Efficient Charge Transport via Controlled Evaporation of Confined Fluids
Gyounglyul Jo, Jae Won Jeong, Solip Choi, Hyungwoo Kim, Jong‐Jin Park, Jaehan Jung, Mincheol Chang
SJR Q1ACS Applied Materials & Interfaces

Long-range alignment of conjugated polymers is as critical as polymer chain packing for achieving efficient charge transport in polymer thin films used in electronic and optoelectronic devices. Here, the present study reports a facile, scalable strategy that enables the deposition of macroscopically aligned polymer semiconductor nanowire (NW)-array films with highly enhanced charge carrier mobility, using a modified controlled evaporative self-assembly (MCESA) technique. Organic field-effect tra

Electrical and Electronic EngineeringEngineering

Research Areas

Electrical and Electronic EngineeringControl and Systems EngineeringMechanical EngineeringRenewable Energy, Sustainability and the EnvironmentAtomic and Molecular Physics, and OpticsInformation Systems

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