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Ji Wook Jang

Ulsan National Institute of Science and Technology · Engineering

About the Lab

Professor Ji Wook Jang's research lab specializes in the development of advanced wearable electronic systems for real-time biomedical monitoring and therapeutic applications. The lab focuses on designing stretchable, transparent, and biocompatible electronic materials—such as metallic glass nanotroughs, metal nanofibers, and liquid metals—for integration with biological interfaces. Key research directions include smart contact lenses for ocular disease diagnostics, wireless health monitoring devices, and implantable or skin-attachable therapeutic systems with real-time sensing and feedback capabilities. The lab emphasizes materials innovation combined with practical medical applications, particularly in ophthalmology and chronic disease management.

wearable electronicsbiomedical sensorstransparent conductorsliquid metalssmart contact lenses

Research Overview

Papers
34
Total Citations
3,106
Papers (5y)
14
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
14total
2020
2021
2022
2023
2024
Citations per year (5y)
873total
20202021202220232024

Selected Papers

15
1
Article|653 citations·2018
Soft, smart contact lenses with integrations of wireless circuits, glucose sensors, and displays
Jihun Park, Joohee Kim, So-Yun Kim, Woon Hyung Cheong, Jiuk Jang, Young‐Geun Park, Kyungmin Na, Yun‐Tae Kim, Jun Hyuk Heo, Chang Young Lee, Jung Heon Lee, Franklin Bien
SJR Q1Science AdvancesOA

Recent advances in wearable electronics combined with wireless communications are essential to the realization of medical applications through health monitoring technologies. For example, a smart contact lens, which is capable of monitoring the physiological information of the eye and tear fluid, could provide real-time, noninvasive medical diagnostics. However, previous reports concerning the smart contact lens have indicated that opaque and brittle components have been used to enable the opera

Biomedical EngineeringEngineering
2
Article|305 citations·2015
Stretchable, Transparent Electrodes as Wearable Heaters Using Nanotrough Networks of Metallic Glasses with Superior Mechanical Properties and Thermal Stability
Byeong Wan An, Eun-Ji Gwak, Kukjoo Kim, Young-Cheon Kim, Jiuk Jang, Ju‐Young Kim, Jang‐Ung Park
SJR Q1Nano Letters

Mechanical robustness, electrical and chemical reliabilities of devices against large deformations such as bending and stretching have become the key metrics for rapidly emerging wearable electronics. Metallic glasses (MGs) have high elastic limit, electrical conductivity, and corrosion resistance, which can be promising for applications in wearable electronics. However, their applications in wearable electronics or transparent electrodes have not been extensively explored so far. Here, we demon

Biomedical EngineeringEngineering
3
Review|288 citations·2017
Smart Sensor Systems for Wearable Electronic Devices
Byeong Wan An, Jung Hwal Shin, So‐Yun Kim, Joohee Kim, Sangyoon Ji, Jihun Park, Youngjin Lee, Jiuk Jang, Young‐Geun Park, Eunjin Cho, Subin Jo, Jang‐Ung Park
SJR Q1PolymersOA

Wearable human interaction devices are technologies with various applications for improving human comfort, convenience and security and for monitoring health conditions. Healthcare monitoring includes caring for the welfare of every person, which includes early diagnosis of diseases, real-time monitoring of the effects of treatment, therapy, and the general monitoring of the conditions of people's health. As a result, wearable electronic devices are receiving greater attention because of their f

Biomedical EngineeringEngineering
4
Review|244 citations·2021
Liquid Metal‐Based Soft Electronics for Wearable Healthcare
Young‐Geun Park, Gayeon Lee, Jiuk Jang, Su Min Yun, Enji Kim, Jang‐Ung Park
SJR Q1Advanced Healthcare Materials

Wearable healthcare devices have garnered substantial interest for the realization of personal health management by monitoring the physiological parameters of individuals. Attaining the integrity between the devices and the biological interfaces is one of the greatest challenges to achieving high-quality body information in dynamic conditions. Liquid metals, which exist in the liquid phase at room temperatures, are advanced intensively as conductors for deformable devices because of their excell

Biomedical EngineeringEngineering
5
Article|182 citations·2017
Rapid production of large-area, transparent and stretchable electrodes using metal nanofibers as wirelessly operated wearable heaters
Jiuk Jang, Byung Gwan Hyun, Sangyoon Ji, Eunjin Cho, Byeong Wan An, Woon Hyung Cheong, Jang‐Ung Park
SJR Q1NPG Asia MaterialsOA

A rapidly growing interest in wearable electronics has led to the development of stretchable and transparent heating films that can replace the conventional brittle and opaque heaters. Herein, we describe the rapid production of large-area, stretchable and transparent electrodes using electrospun ultra-long metal nanofibers (mNFs) and demonstrate their potential use as wirelessly operated wearable heaters. These mNF networks provide excellent optoelectronic properties (sheet resistance of ~1.3 Ω

Biomedical EngineeringEngineering
6
Article|142 citations·2021
Smart contact lens and transparent heat patch for remote monitoring and therapy of chronic ocular surface inflammation using mobiles
Jiuk Jang, Joohee Kim, Haein Shin, Young‐Geun Park, Byung Jun Joo, Hunkyu Seo, Jong‐Eun Won, Dai Woo Kim, Chang Young Lee, Hong Kyun Kim, Jang‐Ung Park
SJR Q1Science AdvancesOA

Wearable electronic devices that can monitor physiological signals of the human body to provide biomedical information have been drawing extensive interests for sustainable personal health management. Here, we report a human pilot trial of a soft, smart contact lens and a skin-attachable therapeutic device for wireless monitoring and therapy of chronic ocular surface inflammation (OSI). As a diagnostic device, this smart contact lens enables real-time measurement of the concentration of matrix m

Public Health, Environmental and Occupational HealthMedicine
7
Article|124 citations·2017
High Dielectric Performances of Flexible and Transparent Cellulose Hybrid Films Controlled by Multidimensional Metal Nanostructures
Sangyoon Ji, Jiuk Jang, Eunjin Cho, Si‐Hoon Kim, Eun‐Seok Kang, Jihoon Kim, Han‐Ki Kim, Hoyoul Kong, Sun‐Kyung Kim, Ju‐Young Kim, Jang‐Ung Park
SJR Q1Advanced Materials

Various wearable electronic devices have been developed for extensive outdoor activities. The key metrics for these wearable devices are high touch sensitivity and good mechanical and thermal stability of the flexible touchscreen panels (TSPs). Their dielectric constants (k) are important for high touch sensitivities. Thus, studies on flexible and transparent cover layers that have high k with outstanding mechanical and thermal reliabilities are essential. Herein, an unconventional approach for

Biomedical EngineeringEngineering
8
Article|113 citations·2016
High-resolution electrohydrodynamic inkjet printing of stretchable metal oxide semiconductor transistors with high performance
Sungwoo Kim, K. Kim, Young Hwan Hwang, Junhwan Park, Junhwan Park, Jiuk Jang, Yoonkey Nam, Yu Kang, Minwoo Kim, Heon‐Joon Park, Zonghoon Lee, Junyoung Choi
SJR Q1Nanoscale

As demands for high pixel densities and wearable forms of displays increase, high-resolution printing technologies to achieve high performance transistors beyond current amorphous silicon levels and to allow low-temperature solution processability for plastic substrates have been explored as key processes in emerging flexible electronics. This study describes electrohydrodynamic inkjet (e-jet) technology for direct printing of oxide semiconductor thin film transistors (TFTs) with high resolution

Electrical and Electronic EngineeringEngineering
9
Article|107 citations·2017
Biomimetic Chitin–Silk Hybrids: An Optically Transparent Structural Platform for Wearable Devices and Advanced Electronics
Moo‐Seok Hong, Gwang‐Mun Choi, Joohee Kim, Jiuk Jang, Byeongwook Choi, Joong‐Kwon Kim, Seung‐hwan Jeong, Seongmin Leem, Hee Young Kwon, Hyunbin Hwang, Hyeon‐Gyun Im, Jang‐Ung Park
SJR Q1Advanced Functional Materials

Abstract The cuticles of insects and marine crustaceans are fascinating models for man‐made advanced functional composites. The excellent mechanical properties of these biological structures rest on the exquisite self‐assembly of natural ingredients, such as biominerals, polysaccharides, and proteins. Among them, the two commonly found building blocks in the model biocomposites are chitin nanofibers and silk‐like proteins with β‐sheet structure. Despite being wholly organic, the chitinous protei

BiomaterialsMaterials Science
10
Article|104 citations·2019
Mechanoluminescent, Air-Dielectric MoS2 Transistors as Active-Matrix Pressure Sensors for Wide Detection Ranges from Footsteps to Cellular Motions
Jiuk Jang, Hyobeom Kim, Sangyoon Ji, Ha Jun Kim, Min Soo Kang, Tae Soo Kim, Jong‐Eun Won, Jae‐Hyun Lee, Jinwoo Cheon, Kibum Kang, Won Bin Im, Jang‐Ung Park
SJR Q1Nano Letters

Tactile pressure sensors as flexible bioelectronic devices have been regarded as the key component for recently emerging applications in electronic skins, health-monitoring devices, or human-machine interfaces. However, their narrow range of sensible pressure and their difficulty in forming high integrations represent major limitations for various potential applications. Herein, we report fully integrated, active-matrix arrays of pressure-sensitive MoS<sub>2</sub> transistors with mechanolumines

Biomedical EngineeringEngineering
11
Article|102 citations·2024
Liquid-metal-based three-dimensional microelectrode arrays integrated with implantable ultrathin retinal prosthesis for vision restoration
Won Gi Chung, Jiuk Jang, Gang Cui, Sanghoon Lee, Han Jeong, Haisu Kang, Hunkyu Seo, Sumin Kim, Enji Kim, Junwon Lee, Seung Geol Lee, Suk Ho Byeon
SJR Q1Nature NanotechnologyOA

Abstract Electronic retinal prostheses for stimulating retinal neurons are promising for vision restoration. However, the rigid electrodes of conventional retinal implants can inflict damage on the soft retina tissue. They also have limited selectivity due to their poor proximity to target cells in the degenerative retina. Here we present a soft artificial retina (thickness, 10 μm) where flexible ultrathin photosensitive transistors are integrated with three-dimensional stimulation electrodes of

Cellular and Molecular NeuroscienceNeuroscience
12
Article|86 citations·2020
Integration of Transparent Supercapacitors and Electrodes Using Nanostructured Metallic Glass Films for Wirelessly Rechargeable, Skin Heat Patches
Sang-Il Lee, Sang-Il Lee, Sang‐Woo Kim, Matteo Ghidelli, Hyeon Seok An, Jiuk Jang, Andrea Li Bassi, Sang‐Young Lee, Sang‐Young Lee, Jang‐Ung Park
SJR Q1Nano LettersOA

Here we demonstrate an unconventional fabrication of highly transparent supercapacitors and electrodes using random networks of nanostructured metallic glass nanotroughs for their integrations as wirelessly rechargeable and invisible, skin heat patches. Transparent supercapacitors with fine conductive patterns were printed using an electrohydrodynamic jet-printing. Also, transparent and stretchable electrodes, for wireless antennas, heaters and interconnects, were formed using random network bas

Electrical and Electronic EngineeringEngineering
13
Article|70 citations·2019
Human‐Interactive, Active‐Matrix Displays for Visualization of Tactile Pressures
Jiuk Jang, Byungkook Oh, Subin Jo, Sung-Hee Park, Hyeon Seok An, Seung‐Hee Lee, Woon Hyung Cheong, Seunghyup Yoo, Jang‐Ung Park
SJR Q1Advanced Materials Technologies

Abstract Human‐interactive displays involve the interfacing of a stimuli‐responsive sensor with a human‐readable response. Human‐readable responses include the five recognized senses, i.e., sight (vision), hearing (audition), taste (gustation), smell (olfaction), and touch (somatosensation). Vision is considered to be the most informative human stimulus so that the visualization of electrical, thermal, and mechanical data is important for various applications. Herein, the fabrication of human‐in

Biomedical EngineeringEngineering
14
Article|63 citations·2019
Amorphous Oxide Semiconductor Transistors with Air Dielectrics for Transparent and Wearable Pressure Sensor Arrays
Sangyoon Ji, Jiuk Jang, Jae Chul Hwang, Youngjin Lee, Jae‐Hyun Lee, Jang‐Ung Park
SJR Q1Advanced Materials Technologies

Abstract Flexible, transparent pressure sensors have numerous potential applications in wearable electronics, soft robotics, health monitoring. In particular, highly sensitive and reliable pressure sensors that cover wide ranges of pressures are promising because they can undergo various external stimulations. Here an unconventional approach is presented for fabricating the active‐matrix array of air‐dielectric, amorphous oxide semiconductor transistors for transparent, wearable pressure sensors

Biomedical EngineeringEngineering
15
Article|56 citations·2021
Multimodal Digital X‐ray Scanners with Synchronous Mapping of Tactile Pressure Distributions using Perovskites
Jiuk Jang, Sangyoon Ji, G. Krishnamurthy Grandhi, Han Bin Cho, Won Bin Im, Jang‐Ung Park
SJR Q1Advanced MaterialsOA

Visual and tactile information are the key intuitive perceptions in sensory systems, and the synchronized detection of these two sensory modalities can enhance accuracy of object recognition by providing complementary information between them. Herein, multimodal integration of flexible, high-resolution X-ray detectors with a synchronous mapping of tactile pressure distributions for visualizing internal structures and morphologies of an object simultaneously is reported. As a visual-inspection me

Electrical and Electronic EngineeringEngineering

Research Areas

Biomedical EngineeringElectrical and Electronic EngineeringCellular and Molecular NeurosciencePublic Health, Environmental and Occupational HealthBiomaterialsMaterials Chemistry

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