Skip to main content

Yun-Young Jung

Pohang University of Science and Technology · Engineering

About the Lab

Professor Yun-Young Jung's research lab specializes in advanced flexible and wearable electronic systems, focusing on next-generation sensors and oxide semiconductor devices for healthcare and high-performance electronics. The lab pioneers innovations in transparent, skin-attachable sensors, ultrathin electronic skins for voice and physiological signal detection, and novel interface engineering for stable, high-sensitivity nanoelectronics. Key research directions include the development of low-resistance contacts in oxide semiconductors, surface-modified noble-metal electrodes for biosignal acquisition, and mechanically robust flexible substrates using low-modulus interlayers.

flexible electronicswearable sensorsoxide semiconductorscontact engineeringbiosensors

Research Overview

Papers
86
Total Citations
2,206
Papers (5y)
43
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
43total
2022
2023
2024
2025
2026
Citations per year (5y)
146total
20222023202420252026

Selected Papers

15
1
Article|632 citations·2016
Linearly and Highly Pressure‐Sensitive Electronic Skin Based on a Bioinspired Hierarchical Structural Array
Geun Yeol Bae, Sang Woo Pak, Daegun Kim, Giwon Lee, Do Hwan Kim, Yoonyoung Chung, Kilwon Cho
SJR Q1Advanced Materials

Pressure-sensitive electronic skin composed of a hierarchical structural array exhibits outstanding linear and high sensitivity in the pressure range exerted by gentle touch. By virtue of monolayer graphene acting as electrode material, this device can be operated with low voltage. Especially, its high transparency enables an accurate placement of the device on the target position when it is used for health monitoring.

Biomedical EngineeringEngineering
2
Article|193 citations·2019
An ultrathin conformable vibration-responsive electronic skin for quantitative vocal recognition
Siyoung Lee, Junsoo Kim, Inyeol Yun, Geun Yeol Bae, Daegun Kim, Sangsik Park, Il-Min Yi, Wonkyu Moon, Yoonyoung Chung, Kilwon Cho
SJR Q1Nature CommunicationsOA

Abstract Flexible and skin-attachable vibration sensors have been studied for use as wearable voice-recognition electronics. However, the development of vibration sensors to recognize the human voice accurately with a flat frequency response, a high sensitivity, and a flexible/conformable form factor has proved a major challenge. Here, we present an ultrathin, conformable, and vibration-responsive electronic skin that detects skin acceleration, which is highly and linearly correlated with voice

Biomedical EngineeringEngineering
3
Article|73 citations·2011
Controlling Electric Dipoles in Nanodielectrics and Its Applications for Enabling Air-Stable n-Channel Organic Transistors
Yoonyoung Chung, Eric Verploegen, Artūras Vailionis, Yun Sun, Yoshio Nishi, Boris Murmann, Zhenan Bao
SJR Q1Nano Letters

We present a new method to manipulate the channel charge density of field-effect transistors using dipole-generating self-assembled monolayers (SAMs) with different anchor groups. Our approach maintains an ideal interface between the dipole layers and the semiconductor while changing the built-in electric potential by 0.41-0.50 V. This potential difference can be used to change effectively the electrical properties of nanoelectronic devices. We further demonstrate the application of the SAM dipo

Electrical and Electronic EngineeringEngineering
4
Article|40 citations·2020
Multilayer Substrate to Use Brittle Materials in Flexible Electronics
Seongmin Park, Hyuk Park, Suwon Seong, Yoonyoung Chung
SJR Q1Scientific ReportsOA

Flexible materials with sufficient mechanical endurance under bending or folding is essential for flexible electronic devices. Conventional rigid materials such as metals and ceramics are mostly brittle so that their properties can deteriorate under a certain amount of strain. In order to utilize high-performance, but brittle conventional materials in flexible electronics, we propose a novel flexible substrate structure with a low-modulus interlayer. The low-modulus interlayer reduces the surfac

Biomedical EngineeringEngineering
5
Article|37 citations·2021
Stable Bioelectric Signal Acquisition Using an Enlarged Surface-Area Flexible Skin Electrode
Inyeol Yun, Jinpyeo Jeung, Hyungsub Lim, Jieun Kang, Sangyeop Lee, Seongmin Park, Suwon Seong, Soojin Park, Kilwon Cho, Yoonyoung Chung
SJR Q1ACS Applied Electronic Materials

Numerous wearable devices were developed to measure bioelectric signals for continuous healthcare monitoring. The electrode, which interconnects electronics and the human body, significantly affects the signal quality. Although Ag/AgCl electrodes have been commonly used, noble-metal electrodes are more promising in terms of long-term reusability and flexibility. However, the signal-to-noise ratio (SNR) of noble metals is still insufficient for highly accurate biosignal acquisition. In this study

Biomedical EngineeringEngineering
6
Article|34 citations·2022
Enhancing the Contact between a-IGZO and Metal by Hydrogen Plasma Treatment for a High-Speed Varactor (>30 GHz)
Hyuk Park, Ju‐Young Yun, Seongmin Park, In-sung Ahn, Gibeom Shin, Suwon Seong, Ho-Jin Song, Yoonyoung Chung
SJR Q1ACS Applied Electronic Materials

We achieved the lowest contact resistance between a-IGZO and a metal electrode for >30 GHz operation of an oxide semiconductor device. For high-resolution display and high-speed electronic devices, both bulk and contact resistances need to be reduced. In this study, hydrogen plasma was used to lower the contact resistance significantly by modifying the surface of the a-IGZO thin film. The potential barrier width at the interface was decreased by increasing the carrier concentration, and weak M–O

Electrical and Electronic EngineeringEngineering
7
Article|32 citations·2000
Destruction of aniline by mediated electrochemical oxidation with Ce(IV) and Co(III) as mediators
Yoonyoung Chung, S.-M. Park
SJR Q2Journal of Applied Electrochemistry
Polymers and PlasticsMaterials Science
8
Article|28 citations·2020
Low-Temperature Fabrication (≤150 °C) of High-Quality Sputtered Silicon Oxide Thin Film with Hydrogen Plasma Treatment
Taewon Seo, Hyuk Park, Gilsu Jeon, Ju‐Young Yun, Seongmin Park, Suwon Seong, Yoonyoung Chung
SJR Q1ACS Applied Electronic Materials

Low-temperature fabrication of thin-film dielectrics is essential for various applications including flexible/stretchable electronics, monolithic three-dimensional integrated circuits, and large-area sensors/displays. Silicon dioxide is one of the most extensively used dielectric materials, but conventional deposition methods such as plasma-enhanced chemical vapor deposition and atomic layer deposition require relatively high temperatures. In this study, a high-quality SiO2 thin film was fabrica

Electrical and Electronic EngineeringEngineering
9
Article|27 citations·2012
Engineering the metal gate electrode for controlling the threshold voltage of organic transistors
Yoonyoung Chung, Olasupo Johnson, Michael Deal, Yoshio Nishi, Boris Murmann, Zhenan Bao
SJR Q1Applied Physics LettersOA

For practical applications of organic field-effect transistors (OFETs), the control of threshold voltage (V-TH) is important as different circuits require different electrical characteristics. Here, we demonstrate two types of gate electrode structures to achieve this control, namely, via dual-metal gates and bilayer metal gates. The first approach uses different metallic materials, titanium, and platinum, while the second approach uses different thicknesses in a metal bilayer composed of alumin

Electrical and Electronic EngineeringEngineering
10
Article|26 citations·2010
Low-voltage and short-channel pentacene field-effect transistors with top-contact geometry using parylene-C shadow masks
Yoonyoung Chung, Boris Murmann, Selvapraba Selvarasah, Mehmet R. Dokmeci, Zhenan Bao
SJR Q1Applied Physics LettersOA

We have fabricated high-performance top-contact pentacene field-effect transistors using a nanometer-scale gate dielectric and parylene-C shadow masks. The high-capacitance gate dielectric, deposited by atomic layer deposition of aluminum oxide, resulted in a low operating voltage of 2.5 V. The flexible and conformal parylene-C shadow masks allowed fabrication of transistors with channel lengths of L=5, 10, and 20 μm. The field-effect mobility of the transistors was μ=1.14 (±0.08) cm2/V s on ave

Electrical and Electronic EngineeringEngineering
11
Article|14 citations·2025
Multimodal deep ensemble classification system with wearable vibration sensor for detecting throat-related events
Yonghun Song, Inyeol Yun, Sandra Giovanoli, Chris Awai Easthope, Yoonyoung Chung
SJR Q1npj Digital MedicineOA

Dysphagia, a swallowing disorder, requires continuous monitoring of throat-related events to obtain comprehensive insights into the patient's pharyngeal and laryngeal functions. However, conventional assessments were performed by medical professionals in clinical settings, limiting persistent monitoring. We demonstrate feasibility of a ubiquitous monitoring system for autonomously detecting throat-related events utilizing a soft skin-attachable throat vibration sensor (STVS). The STVS accurately

Speech and HearingHealth Professions
12
Article|14 citations·2022
Highly Linear and Symmetric Analog Neuromorphic Synapse Based on Metal Oxide Semiconductor Transistors with Self‐Assembled Monolayer for High‐Precision Neural Network Computation
Seongmin Park, Suwon Seong, Gilsu Jeon, Wonjae Ji, Kyungmi Noh, Seyoung Kim, Yoonyoung Chung
SJR Q1Advanced Electronic MaterialsOA

Abstract This work presents an analog neuromorphic synapse device consisting of two oxide semiconductor transistors for high‐precision neural networks. One of the two transistors controls the synaptic weight by charging or discharging the storage node, which leads to a conductance change in the other transistor. The programmed weight maintains for more than 300 s as electrons in the storage node are well preserved due to the extremely low off current of the oxide transistor. Ideal synaptic behav

Electrical and Electronic EngineeringEngineering
13
Article|14 citations·2015
Ubiquitous Graphene Electronics on Scotch Tape
Yoonyoung Chung, Hyun Ho Kim, Sangryun Lee, Eunho Lee, Seong-Won Kim, Seunghwa Ryu, Kilwon Cho
SJR Q1Scientific ReportsOA

We report a novel concept of graphene transistors on Scotch tape for use in ubiquitous electronic systems. Unlike common plastic substrates such as polyimide and polyethylene terephthalate, the Scotch tape substrate is easily attached onto various objects such as banknotes, curved surfaces, and human skin, which implies potential applications wherein electronics can be placed in any desired position. Furthermore, the soft Scotch tape serves as an attractive substrate for flexible/foldable electr

Biomedical EngineeringEngineering
14
Article|12 citations·2019
Ultra-Low Power Wearable Infant Sleep Position Sensor
Inyeol Yun, Jinpyeo Jeung, Mijung Kim, Young-Seok Kim, Yoonyoung Chung
SJR Q1SensorsOA

Numerous wearable sensors have been developed for a variety of needs in medical/healthcare/wellness/sports applications, but there are still doubts about their usefulness due to uncomfortable fit or frequent battery charging. Because the size or capacity of battery is the major factor affecting the convenience of wearable sensors, power consumption must be reduced. We developed a method that can significantly reduce the power consumption by introducing a signal repeater and a special switch that

Electrical and Electronic EngineeringEngineering
15
Article|10 citations·2024
IGZO Phototransistor with Ultrahigh Sensitivity at Broad Spectrum Range (450–950 nm) Realized by Incorporating PM6:Y6 Bulk Heterojunction
Hyung Min Ko, Seok Joo Yang, Jinpyeo Jeung, Hyuk Park, TaeWon Seo, Seung‐Mo Kim, Byoung Hun Lee, Kilwon Cho, Yoonyoung Chung
SJR Q1Advanced Optical Materials

Abstract Among various photoresponsive materials, organic materials have gained interest due to their low cost, large‐scale yields, and compatibility with flexible substrates. However, their low photoresponsivity compared to inorganic counterparts has been consistently pointed out as a limitation. To address this issue, a highly photoresponsive PM6:Y6/IGZO hybrid phototransistor is presented with a broad spectral range of 450–950 nm. The photoresponse of the device is enhanced by controlling the

Polymers and PlasticsMaterials Science

Research Areas

Electrical and Electronic EngineeringBiomedical EngineeringMaterials ChemistrySignal ProcessingPolymers and PlasticsElectronic, Optical and Magnetic Materials

Dive deeper into Yun-Young Jung's research on Nubint

Open this lab's papers in the app to read with AI, summarize, and cite in your writing.