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Gyuweon Jung

Seoul National University · 工学

研究室紹介

Professor Gyuweon Jung's research lab specializes in advanced gas sensor technologies with a focus on low-power, high-sensitivity, and selective detection for applications in environmental monitoring, industrial safety, and the Internet of Things. The lab explores fundamental mechanisms of gas-sensing materials—particularly metal oxide semiconductors and nanostructured oxides—while emphasizing innovative strategies such as electrically controlled surface oxygen engineering and near-sensor computing architectures. Key research directions include the development of film-based and nanostructured sensors with improved reliability, uniformity, and energy efficiency through precise fabrication control and in-situ characterization techniques.

gas sensorsmetal oxide semiconductorslow-power sensingsurface oxygen controlnear-sensor computing

Research Overview

Papers
98
Total Citations
1,663
Papers (5y)
76
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
76total
2021
2022
2023
2024
2025
Citations per year (5y)
1,013total
20212022202320242025

Selected Papers

15
1
Review|220 citations·2020
FET-type gas sensors: A review
Seongbin Hong, Meile Wu, Yoonki Hong, Yujeong Jeong, Gyuweon Jung, Wonjun Shin, Jinwoo Park, Donghee Kim, Dongkyu Jang, Jong‐Ho Lee
SJR Q1Sensors and Actuators B Chemical
Electrical and Electronic EngineeringEngineering
2
Review|83 citations·2021
Gas sensing materials roadmap
Huaping Wang, Jianmin Ma, Jun Zhang, Yuezhan Feng, Mani Teja Vijjapu, Saravanan Yuvaraja, Sandeep G. Surya, K. Saláma, Chengjun Dong, Yude Wang, Qin Kuang, Zamaswazi P. Tshabalala
SJR Q2Journal of Physics Condensed MatterOA

Gas sensor technology is widely utilized in various areas ranging from home security, environment and air pollution, to industrial production. It also hold great promise in non-invasive exhaled breath detection and an essential device in future internet of things. The past decade has witnessed giant advance in both fundamental research and industrial development of gas sensors, yet current efforts are being explored to achieve better selectivity, higher sensitivity and lower power consumption. T

Electrical and Electronic EngineeringEngineering
3
Article|81 citations·2023
Reconfigurable Manipulation of Oxygen Content on Metal Oxide Surfaces and Applications to Gas Sensing
Gyuweon Jung, Suyeon Ju, Kangwook Choi, Jaehyeon Kim, Seongbin Hong, Jinwoo Park, Wonjun Shin, Yujeong Jeong, Seungwu Han, Woo Young Choi, Jong‐Ho Lee
SJR Q1ACS Nano

Oxygen vacancies and adsorbed oxygen species on metal oxide surfaces play important roles in various fields. However, existing methods for manipulating surface oxygen require severe settings and are ineffective for repetitive manipulation. We present a method to manipulate the amount of surface oxygen by modifying the oxygen adsorption energy by electrically controlling the electron concentration of the metal oxide. The surface oxygen control ability of the method is verified using first-princip

Electrical and Electronic EngineeringEngineering
4
Article|72 citations·2019
SO2 gas sensing characteristics of FET- and resistor-type gas sensors having WO3 as sensing material
Gyuweon Jung, Yujeong Jeong, Yoonki Hong, Meile Wu, Seongbin Hong, Wonjun Shin, Jinwoo Park, Dongkyu Jang, Jong-Ho Lee
SJR Q3Solid-State Electronics
Electrical and Electronic EngineeringEngineering
5
Article|60 citations·2021
A low-power embedded poly-Si micro-heater for gas sensor platform based on a FET transducer and its application for NO2 sensing
Gyuweon Jung, Yoonki Hong, Seongbin Hong, Dongkyu Jang, Yujeong Jeong, Wonjun Shin, Jinwoo Park, Donghee Kim, Chan Bae Jeong, Dong Uk Kim, Ki Soo Chang, Jong-Ho Lee
SJR Q1Sensors and Actuators B Chemical
Electrical and Electronic EngineeringEngineering
6
Article|57 citations·2020
Low frequency noise characteristics of resistor- and Si MOSFET-type gas sensors fabricated on the same Si wafer with In2O3 sensing layer
Wonjun Shin, Gyuweon Jung, Seongbin Hong, Yujeong Jeong, Jinwoo Park, Dongkyu Jang, Byung‐Gook Park, Jong‐Ho Lee
SJR Q1Sensors and Actuators B Chemical
Electrical and Electronic EngineeringEngineering
7
Article|53 citations·2021
Comparison of the characteristics of semiconductor gas sensors with different transducers fabricated on the same substrate
Gyuweon Jung, Wonjun Shin, Seongbin Hong, Yujeong Jeong, Jinwoo Park, Donghee Kim, Jong‐Ho Bae, Byung‐Gook Park, Jong-Ho Lee
SJR Q1Sensors and Actuators B Chemical
Electrical and Electronic EngineeringEngineering
8
Article|48 citations·2022
Highly Selective and Low-Power Carbon Monoxide Gas Sensor Based on the Chain Reaction of Oxygen and Carbon Monoxide to WO3
Gyuweon Jung, Seongbin Hong, Yujeong Jeong, Wonjun Shin, Jinwoo Park, Donghee Kim, Jong‐Ho Lee
SJR Q1ACS Applied Materials & Interfaces

Carbon monoxide (CO) poisoning can easily occur in industrial and domestic settings, causing headaches, loss of consciousness, or death from overexposure. Commercially available CO gas sensors consume high power (typically 38 mW), whereas low-power gas sensors using nanostructured materials with catalysts lack reliability and uniformity. A low-power (1.8 mW @ 392 °C), sensitive, selective, reliable, and practical CO gas sensor is presented. The sensor adopts floated WO<sub>3</sub> film as a sens

Electrical and Electronic EngineeringEngineering
9
Article|44 citations·2023
Transducer-Aware Hydroxy-Rich-Surface Indium Oxide Gas Sensor for Low-Power and High-Sensitivity NO2 Gas Sensing
Gyuweon Jung, Hunhee Shin, Se Won Jeon, Yong Hyun Lim, Seongbin Hong, Do Heui Kim, Jong‐Ho Lee
SJR Q1ACS Applied Materials & Interfaces

Low-power metal oxide (MOX)-based gas sensors are widely applied in edge devices. To reduce power consumption, nanostructured MOX-based sensors that detect gas at low temperatures have been reported. However, the fabrication process of these sensors is difficult for mass production, and these sensors are lack uniformity and reliability. On the other hand, MOX film-based gas sensors have been commercialized but operate at high temperatures and exhibit low sensitivity. Herein, commercially advanta

Electrical and Electronic EngineeringEngineering
10
Article|31 citations·2023
Energy Efficient Artificial Olfactory System with Integrated Sensing and Computing Capabilities for Food Spoilage Detection
Gyuweon Jung, Jaehyeon Kim, Seongbin Hong, Hunhee Shin, Yujeong Jeong, Wonjun Shin, Dongseok Kwon, Woo Young Choi, Jong‐Ho Lee
SJR Q1Advanced ScienceOA

Abstract Artificial olfactory systems (AOSs) that mimic biological olfactory systems are of great interest. However, most existing AOSs suffer from high energy consumption levels and latency issues due to data conversion and transmission. In this work, an energy‐ and area‐efficient AOS based on near‐sensor computing is proposed. The AOS efficiently integrates an array of sensing units (merged field effect transistor (FET)‐type gas sensors and amplifier circuits) and an AND‐type nonvolatile memor

Biomedical EngineeringEngineering
11
Article|27 citations·2022
Design optimization of FET-type gas sensor considering device characteristics, sensitivity, power, noise, and SNR
Gyuweon Jung, Seongbin Hong, Wonjun Shin, Yujeong Jeong, Jinwoo Park, Donghee Kim, Jong-Ho Lee
SJR Q1Sensors and Actuators B Chemical
Electrical and Electronic EngineeringEngineering
12
Article|20 citations·2021
Optimization of post-deposition annealing temperature for improved signal-to-noise ratio in In 2 O 3 gas sensor
Wonjun Shin, Seongbin Hong, Yujeong Jeong, Gyuweon Jung, Jinwoo Park, Donghee Kim, Byung-Gook Park, Jong‐Ho Lee
SJR Q2Semiconductor Science and Technology

Abstract This paper investigates the effects of post-deposition annealing (PDA) temperature on H 2 S gas sensing and low-frequency noise characteristics of In 2 O 3 gas sensors. In 2 O 3 thin-films are deposited using the radio frequency (RF) sputtering method at an RF power of 150 W and post-annealed at various temperatures (200, 300, and 400 °C). The response of the In 2 O 3 gas sensor to H 2 S decreases with increasing PDA temperature due to the increase of grain size. However, the In 2 O 3 p

Electrical and Electronic EngineeringEngineering
13
Article|14 citations·2025
Novel Gas Sensor Signal Acquisition Method: Amplifying Sensor Signals and Enabling Efficient Gas Identification
Kangwook Choi, Ryun‐Han Koo, Jinwoo Park, Donghee Kim, Jaehyeon Kim, Hunhee Shin, Gyuweon Jung, Jong‐Ho Lee
SJR Q1Advanced ScienceOA

Abstract Enhancing sensor sensitivity and gas identification capabilities is essential for the broad application of gas sensors. Developing efficient transducing methods for sensors can be applied to a wide range of sensors. However, developing such methods for resistive sensors remains challenging. In this study, an operating method that enhances both sensitivity and gas identification capability in resistive gas sensors is presented. The sensor operation is divided into two phases: the reactio

Electrical and Electronic EngineeringEngineering
14
Article|8 citations·2019
Accurate identification of gas type and concentration using DNN reflecting the sensing properties of MOSFET-type gas sensor
Gyuweon Jung, Hyeongsu Kim, Yujeong Jeong, Yoonki Hong, Meile Wu, Seongbin Hong, Wonjun Shin, Dongkyu Jang, Jong-Ho Lee
2019 IEEE International Symposium on Olfaction and Electronic Nose (ISOEN)

The principal component analysis (PCA) and deep neural network (DNN) are used to classify the gas types (reducing and oxidizing) and to identify the concentration of gases. The pMOSFET-type gas sensor is used to provide sensing data for learning. The gas sensor has 15-nm-thick ZnO as a sensing layer processed by atomic layer deposition (ALD). The sensing characteristics of NO <sub xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">2</sub> and H <sub xmlns:m

Biomedical EngineeringEngineering
15
Article|6 citations·2021
Response Comparison of Resistor- and Si FET-Type Gas Sensors on the Same Substrate
Gyuweon Jung, Seongbin Hong, Yujeong Jeong, Wonjun Shin, Jinwoo Park, Donghee Kim, Jong‐Ho Bae, Byung‐Gook Park, Jong‐Ho Lee
SJR Q2IEEE Transactions on Electron Devices

The response characteristics of a field-effect transistor (FET)-type gas sensor are compared with those of the resistor-type gas sensor fabricated on the same Si substrate. Both types of gas sensors have the same sensing material prepared by the same process. Indium oxide (In <sub xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">2</sub> O <sub xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">3</sub> ) film is adopt

Electrical and Electronic EngineeringEngineering

Research Areas

Electrical and Electronic EngineeringBiomedical EngineeringBioengineeringMaterials ChemistryMechanical Engineering

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