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Ha-Wook Jung

Korea University · Engineering

About the Lab

Professor Ha-Wook Jung's research lab specializes in the design and engineering of soft, stretchable, and biocompatible electronic systems that intimately interface with the human body. The lab pioneers advanced 3D architectures in advanced materials—particularly device-grade silicon—using geometric transformation techniques like compressive buckling to create complex, functional structures inspired by biological systems. Key research directions include developing battery-free, wireless, and in-sensor intelligent systems for continuous physiological monitoring, as well as creating low-modulus, tissue-mimetic materials for next-generation biomedical implants and wearable sensors. The lab integrates materials science, mechanics, and bioelectronics to enable next-generation health technologies with clinical relevance.

3D bioelectronicssoft electronicsbiocompatible materialswireless health monitoringtissue-mimetic materials

Research Overview

Papers
48
Total Citations
6,912
Papers (5y)
29
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
29total
2020
2021
2023
2025
2026
Citations per year (5y)
1,477total
20202021202320252026

Selected Papers

15
1
Article|920 citations·2015
Assembly of micro/nanomaterials into complex, three-dimensional architectures by compressive buckling
Sheng Xu, Zheng Yan, Kyung‐In Jang, Wen Huang, Haoran Fu, Jeonghyun Kim, Zijun Wei, Matthew T. Flavin, Joselle M. McCracken, Renhan Wang, Adina Badea, Yuhao Liu
SJR Q1ScienceOA

Complex three-dimensional (3D) structures in biology (e.g., cytoskeletal webs, neural circuits, and vasculature networks) form naturally to provide essential functions in even the most basic forms of life. Compelling opportunities exist for analogous 3D architectures in human-made devices, but design options are constrained by existing capabilities in materials growth and assembly. We report routes to previously inaccessible classes of 3D constructs in advanced materials, including device-grade

Mechanical EngineeringEngineering
2
Article|796 citations·2015
Soft, stretchable, fully implantable miniaturized optoelectronic systems for wireless optogenetics
Sung Il Park, Daniel Brenner, Gunchul Shin, Clinton D. Morgan, Bryan A. Copits, Ha Uk Chung, Melanie Y. Pullen, Kyung Nim Noh, Steve Davidson, Soong Ju Oh, Jangyeol Yoon, Kyung‐In Jang
SJR Q1Nature BiotechnologyOA
Cellular and Molecular NeuroscienceNeuroscience
3
Article|783 citations·2019
Binodal, wireless epidermal electronic systems with in-sensor analytics for neonatal intensive care
Ha Uk Chung, Bong Hoon Kim, Jong Yoon Lee, Jungyup Lee, Zhaoqian Xie, Erin Ibler, KunHyuck Lee, Anthony Banks, Ji Yoon Jeong, Jong-Won Kim, Christopher Ogle, Dominic Grande
SJR Q1ScienceOA

Existing vital sign monitoring systems in the neonatal intensive care unit (NICU) require multiple wires connected to rigid sensors with strongly adherent interfaces to the skin. We introduce a pair of ultrathin, soft, skin-like electronic devices whose coordinated, wireless operation reproduces the functionality of these traditional technologies but bypasses their intrinsic limitations. The enabling advances in engineering science include designs that support wireless, battery-free operation; r

Electrical and Electronic EngineeringEngineering
4
Article|531 citations·2015
Soft network composite materials with deterministic and bio-inspired designs
Kyung‐In Jang, Ha Uk Chung, Sheng Xu, Chi Hwan Lee, Haiwen Luan, Jae‐Woong Jeong, Huanyu Cheng, Gwang-Tae Kim, Sang Youn Han, Jungwoo Lee, Jeonghyun Kim, Moongee Cho
SJR Q1Nature CommunicationsOA

Hard and soft structural composites found in biology provide inspiration for the design of advanced synthetic materials. Many examples of bio-inspired hard materials can be found in the literature; far less attention has been devoted to soft systems. Here we introduce deterministic routes to low-modulus thin film materials with stress/strain responses that can be tailored precisely to match the non-linear properties of biological tissues, with application opportunities that range from soft biome

Biomedical EngineeringEngineering
5
Article|468 citations·2020
Skin-interfaced biosensors for advanced wireless physiological monitoring in neonatal and pediatric intensive-care units
Ha Uk Chung, Alina Y. Rwei, Aurélie Hourlier‐Fargette, Shuai Xu, KunHyuck Lee, Emma C. Dunne, Zhaoqian Xie, Claire Liu, Andrea S. Carlini, Dong Hyun Kim, Dennis Ryu, Elena V. Kulikova
SJR Q1Nature MedicineOA
Biomedical EngineeringEngineering
6
Article|440 citations·2017
Self-assembled three dimensional network designs for soft electronics
Kyung‐In Jang, Kan Li, Ha Uk Chung, Sheng Xu, Han Na Jung, Yiyuan Yang, Jean Won Kwak, Han Hee Jung, Juwon Song, Ce Yang, Ao Wang, Zhuangjian Liu
SJR Q1Nature CommunicationsOA

Low modulus, compliant systems of sensors, circuits and radios designed to intimately interface with the soft tissues of the human body are of growing interest, due to their emerging applications in continuous, clinical-quality health monitors and advanced, bioelectronic therapeutics. Although recent research establishes various materials and mechanics concepts for such technologies, all existing approaches involve simple, two-dimensional (2D) layouts in the constituent micro-components and inte

Biomedical EngineeringEngineering
7
Article|378 citations·2014
Rugged and breathable forms of stretchable electronics with adherent composite substrates for transcutaneous monitoring
Kyung‐In Jang, Sang Youn Han, Sheng Xu, Kyle E. Mathewson, Yihui Zhang, Jae‐Woong Jeong, Gwang-Tae Kim, R. Chad Webb, Jung Woo Lee, Thomas J. Dawidczyk, Rak Hwan Kim, Young Min Song
SJR Q1Nature CommunicationsOA
Biomedical EngineeringEngineering
8
Article|344 citations·2018
Battery-free, wireless sensors for full-body pressure and temperature mapping
Seungyong Han, Jeonghyun Kim, Sang Min Won, Yinji Ma, Daeshik Kang, Zhaoqian Xie, Kyu‐Tae Lee, Ha Uk Chung, Anthony Banks, Seunghwan Min, Seung Yun Heo, Charles R. Davies
SJR Q1Science Translational Medicine

Thin, soft, skin-like sensors capable of precise, continuous measurements of physiological health have broad potential relevance to clinical health care. Use of sensors distributed over a wide area for full-body, spatiotemporal mapping of physiological processes would be a considerable advance for this field. We introduce materials, device designs, wireless power delivery and communication strategies, and overall system architectures for skin-like, battery-free sensors of temperature and pressur

Biomedical EngineeringEngineering
9
Article|331 citations·2019
Mechano-acoustic sensing of physiological processes and body motions via a soft wireless device placed at the suprasternal notch
KunHyuck Lee, Xiaoyue Ni, Jong Yoon Lee, Hany Arafa, J. David, Shuai Xu, Raudel Avila, Masahiro Irie, Joo Hee Lee, Ryder L. Easterlin, Dong Hyun Kim, Ha Uk Chung
SJR Q1Nature Biomedical EngineeringOA
Biomedical EngineeringEngineering
10
Article|313 citations·2018
Relation between blood pressure and pulse wave velocity for human arteries
Yinji Ma, Jungil Choi, Aurélie Hourlier‐Fargette, Yeguang Xue, Ha Uk Chung, Jong Yoon Lee, Xiufeng Wang, Zhaoqian Xie, Daeshik Kang, Heling Wang, Seungyong Han, Seung‐Kyun Kang
SJR Q1Proceedings of the National Academy of SciencesOA

Significance Continuous, cuffless, and noninvasive blood pressure monitoring by measuring the pulse wave velocity is generally considered to be a promising technique for noninvasive measurements. Previously reported relations between blood pressure and pulse wave velocity relation involve unrealistic assumptions that do not hold for human arteries, and also rely on empirical expressions without any theoretical basis. Here, an analytical model without such assumptions or empirical expressions is

Cardiology and Cardiovascular MedicineMedicine
11
Article|196 citations·2013
Using nanoscale thermocapillary flows to create arrays of purely semiconducting single-walled carbon nanotubes
Sung Hun Jin, Simon Dunham, Jizhou Song, Xu Xie, Ji-Hun Kim, Chaofeng Lü, Ahmad E. Islam, Frank Du, Jae-Seong Kim, Johnny Felts, Yuhang Li, Feng Xiong
SJR Q1Nature Nanotechnology
Materials ChemistryMaterials Science
12
Article|192 citations·2021
Battery-free, wireless soft sensors for continuous multi-site measurements of pressure and temperature from patients at risk for pressure injuries
Yong Suk Oh, Jae-Hwan Kim, Zhaoqian Xie, Seokjoo Cho, Hyeonseok Han, Sung Woo Jeon, Minsu Park, Myeong Namkoong, Raudel Avila, Zhen Song, Sung‐Uk Lee, Kabseok Ko
SJR Q1Nature CommunicationsOA

Capabilities for continuous monitoring of pressures and temperatures at critical skin interfaces can help to guide care strategies that minimize the potential for pressure injuries in hospitalized patients or in individuals confined to the bed. This paper introduces a soft, skin-mountable class of sensor system for this purpose. The design includes a pressure-responsive element based on membrane deflection and a battery-free, wireless mode of operation capable of multi-site measurements at strat

Biomedical EngineeringEngineering
13
Article|163 citations·2020
Wireless sensors for continuous, multimodal measurements at the skin interface with lower limb prostheses
Jean Won Kwak, Mengdi Han, Zhaoqian Xie, Ha Uk Chung, Jong Yoon Lee, Raudel Avila, Jessica Yohay, Xuexian Chen, Cunman Liang, Manish Patel, Inhwa Jung, Jong-Won Kim
SJR Q1Science Translational MedicineOA

Precise form-fitting of prosthetic sockets is important for the comfort and well-being of persons with limb amputations. Capabilities for continuous monitoring of pressure and temperature at the skin-prosthesis interface can be valuable in the fitting process and in monitoring for the development of dangerous regions of increased pressure and temperature as limb volume changes during daily activities. Conventional pressure transducers and temperature sensors cannot provide comfortable, irritatio

Biomedical EngineeringEngineering
14
Article|141 citations·2015
Water-Soluble Thin Film Transistors and Circuits Based on Amorphous Indium–Gallium–Zinc Oxide
Sung Hun Jin, Seung‐Kyun Kang, In-Tak Cho, Sang Youn Han, Ha Uk Chung, Dong Joon Lee, Jongmin Shin, Geun Woo Baek, Tae‐il Kim, Jong-Ho Lee, John A. Rogers
SJR Q1ACS Applied Materials & Interfaces

This paper presents device designs, circuit demonstrations, and dissolution kinetics for amorphous indium-gallium-zinc oxide (a-IGZO) thin film transistors (TFTs) comprised completely of water-soluble materials, including SiNx, SiOx, molybdenum, and poly(vinyl alcohol) (PVA). Collections of these types of physically transient a-IGZO TFTs and 5-stage ring oscillators (ROs), constructed with them, show field effect mobilities (∼10 cm2/Vs), on/off ratios (∼2×10(6)), subthreshold slopes (∼220 mV/dec

Electrical and Electronic EngineeringEngineering
15
Article|111 citations·2021
Differential cardiopulmonary monitoring system for artifact-canceled physiological tracking of athletes, workers, and COVID-19 patients
Hyoyoung Jeong, Jong Yoon Lee, KunHyuck Lee, Youn J. Kang, Jin‐Tae Kim, Raudel Avila, Andreas Tzavelis, Joohee Kim, Hanjun Ryu, Sung Soo Kwak, Jong Uk Kim, Aaron Banks
SJR Q1Science AdvancesOA

Soft, skin-integrated electronic sensors can provide continuous measurements of diverse physiological parameters, with broad relevance to the future of human health care. Motion artifacts can, however, corrupt the recorded signals, particularly those associated with mechanical signatures of cardiopulmonary processes. Design strategies introduced here address this limitation through differential operation of a matched, time-synchronized pair of high-bandwidth accelerometers located on parts of th

Biomedical EngineeringEngineering

Research Areas

Biomedical EngineeringElectrical and Electronic EngineeringCivil and Structural EngineeringPulmonary and Respiratory MedicineCellular and Molecular NeuroscienceMaterials Chemistry

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