Skip to main content

Min-Gu Kim

Hanyang University · Engineering

About the Lab

Professor Min-Gu Kim's research lab specializes in the development of next-generation wearable and implantable electronic systems that seamlessly interface with the human body. The lab focuses on creating soft, stretchable, and biocompatible electronic platforms for real-time physiological monitoring, including electrophysiological signals, musculoskeletal movements, and ocular functions. Key research directions include epidermal electronics, bio-integrated sensors, and smart biomedical devices with multifunctionality such as sensing, stimulation, and thermal management.

epidermal electronicsbiointegrated sensorswearable health monitorsstretchable electronicsnon-invasive sensing

Research Overview

Papers
43
Total Citations
1,733
Papers (5y)
19
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
19total
2022
2023
2024
2025
2026
Citations per year (5y)
149total
20222023202420252026

Selected Papers

15
1
Article|499 citations·2015
Wireless Optofluidic Systems for Programmable In Vivo Pharmacology and Optogenetics
Jae‐Woong Jeong, Jordan G. McCall, Gunchul Shin, Yihui Zhang, Ream Al‐Hasani, Min Ku Kim, Shuo Li, Joo Yong Sim, Kyung‐In Jang, Yan Shi, Daniel Y. Hong, Yuhao Liu
SJR Q1CellOA
Cellular and Molecular NeuroscienceNeuroscience
2
Article|283 citations·2013
Capacitive Epidermal Electronics for Electrically Safe, Long‐Term Electrophysiological Measurements
Jae Woong Jeong, Min Ku Kim, Huanyu Cheng, Woon‐Hong Yeo, Xian Huang, Yuhao Liu, Yihui Zhang, Yonggang Huang, John A. Rogers
SJR Q1Advanced Healthcare MaterialsOA

Integration of capacitive sensing capabilities to epidermal electronic systems (EES) can enhance the robustness in operation for electrophysiological signal measurement. Capacitive EES designs are reusable, electrically safe, and minimally sensitive to motion artifacts. Experiments on human subjects illustrate levels of fidelity in ECG, EMG, and EOG recordings comparable to those of standard gel electrodes and of direct contact EES electrodes.

Cellular and Molecular NeuroscienceNeuroscience
3
Article|119 citations·2016
Mechanically Reinforced Skin‐Electronics with Networked Nanocomposite Elastomer
Seungyong Han, Min Ku Kim, Bo Wang, Dae Seung Wie, Shuodao Wang, Chi Hwan Lee
SJR Q1Advanced Materials

Mechanically reinforced skin-electronics are presented by exploiting networked nanocomposite elastomers where high quality metal nanowires serve as conducting paths. Theoretical and experimental studies show that the established skin-electronics exhibit superior mechanical enhancements against crack and delamination phenomena. Device applications include a class of biomedical devices that offers the ability of thermotherapeutic stimulation and electrophysiological monitoring, all via the skin.

Biomedical EngineeringEngineering
4
Article|109 citations·2019
Flexible submental sensor patch with remote monitoring controls for management of oropharyngeal swallowing disorders
Min Ku Kim, Çagla Kantarcigil, Bongjoong Kim, Ratul Kumar Baruah, Shovan Maity, Yeonsoo Park, Kyunghun Kim, Seungjun Lee, Jaime Bauer Malandraki, Shitij Avlani, Anne Smith, Shreyas Sen
SJR Q1Science AdvancesOA

Successful rehabilitation of oropharyngeal swallowing disorders (i.e., dysphagia) requires frequent performance of head/neck exercises that primarily rely on expensive biofeedback devices, often only available in large medical centers. This directly affects treatment compliance and outcomes, and highlights the need to develop a portable and inexpensive remote monitoring system for the telerehabilitation of dysphagia. Here, we present the development and preliminarily validation of a skin-mountab

Speech and HearingHealth Professions
5
Article|87 citations·2019
Soft-packaged sensory glove system for human-like natural interaction and control of prosthetic hands
Min Ku Kim, Ramviyas Parasuraman, Liu Wang, Yeonsoo Park, Bongjoong Kim, Seung‐Jun Lee, Nanshu Lu, Byung‐Cheol Min, Chi Hwan Lee
SJR Q1NPG Asia MaterialsOA

Abstract People with hand amputations experience strenuous daily life challenges, often leading to lifelong use of a prosthetic hand(s) and services. Modern advanced prosthetic hands must be able to provide human hand-like sensory perceptions to receive external stimuli during daily activities while simultaneously replicating a realistic appearance and physical properties to naturally integrate in social contexts; however, the practical realization of these issues are impeded by a lack of effect

Biomedical EngineeringEngineering
6
Article|86 citations·2021
All-printed stretchable corneal sensor on soft contact lenses for noninvasive and painless ocular electrodiagnosis
Kyunghun Kim, Ho Joong Kim, Haozhe Zhang, Woohyun Park, Dawn Meyer, Min Ku Kim, Bongjoong Kim, Heun Park, Baoxing Xu, Pete Kollbaum, Bryan W. Boudouris, Chi Hwan Lee
SJR Q1Nature CommunicationsOA

Electroretinogram examinations serve as routine clinical procedures in ophthalmology for the diagnosis and management of many ocular diseases. However, the rigid form factor of current corneal sensors produces a mismatch with the soft, curvilinear, and exceptionally sensitive human cornea, which typically requires the use of topical anesthesia and a speculum for pain management and safety. Here we report a design of an all-printed stretchable corneal sensor built on commercially-available dispos

Public Health, Environmental and Occupational HealthMedicine
7
Article|71 citations·2024
Transparent radiative cooling cover window for flexible and foldable electronic displays
Kang Won Lee, Jonghun Yi, Min Ku Kim, Dong Rip Kim
SJR Q1Nature CommunicationsOA

Transparent radiative cooling holds the promise to efficiently manage thermal conditions in various electronic devices without additional energy consumption. Radiative cooling cover windows designed for foldable and flexible displays could enhance cooling capacities in the ubiquitous deployment of flexible electronics in outdoor environments. However, previous demonstrations have not met the optical, mechanical, and moisture-impermeable criteria for such cover windows. Herein, we report transpar

Civil and Structural EngineeringEngineering
8
Review|66 citations·2019
Skin-Mountable Biosensors and Therapeutics: A Review
Eun Kwang Lee, Min Ku Kim, Chi Hwan Lee
SJR Q1Annual Review of Biomedical Engineering

Miniaturization of electronic components and advances in flexible and stretchable materials have stimulated the development of wearable health care systems that can reflect and monitor personal health status by health care professionals. New skin-mountable devices that offer seamless contact onto the human skin, even under large deformations by natural motions of the wearer, provide a route for both high-fidelity monitoring and patient-controlled therapy. This article provides an overview of sev

Biomedical EngineeringEngineering
9
Article|62 citations·2018
Wafer-recyclable, environment-friendly transfer printing for large-scale thin-film nanoelectronics
Dae Seung Wie, Yue Zhang, Min Ku Kim, Bongjoong Kim, Sangwook Park, Young‐Joon Kim, Pedro P. Irazoqui, Xiaolin Zheng, Baoxing Xu, Chi Hwan Lee
SJR Q1Proceedings of the National Academy of SciencesOA

Transfer printing of thin-film nanoelectronics from their fabrication wafer commonly requires chemical etching on the sacrifice of wafer but is also limited by defects with a low yield. Here, we introduce a wafer-recyclable, environment-friendly transfer printing process that enables the wafer-scale separation of high-performance thin-film nanoelectronics from their fabrication wafer in a defect-free manner that enables multiple reuses of the wafer. The interfacial delamination is enabled throug

Biomedical EngineeringEngineering
10
Article|57 citations·2018
Flexible elastomer patch with vertical silicon nanoneedles for intracellular and intratissue nanoinjection of biomolecules
Hyungjun Kim, Hanmin Jang, Bongjoong Kim, Min Ku Kim, Dae Seung Wie, Heung Soo Lee, Dong Rip Kim, Chi Hwan Lee
SJR Q1Science AdvancesOA

Vertically ordered arrays of silicon nanoneedles (Si NNs), due to their nanoscale dimension and low cytotoxicity, could enable minimally invasive nanoinjection of biomolecules into living biological systems such as cells and tissues. Although production of these Si NNs on a bulk Si wafer has been achieved through standard nanofabrication technology, there exists a large mismatch at the interface between the rigid, flat, and opaque Si wafer and soft, curvilinear, and optically transparent biologi

Cellular and Molecular NeuroscienceNeuroscience
11
Article|46 citations·2014
Materials and Wireless Microfluidic Systems for Electronics Capable of Chemical Dissolution on Demand
Chi Hwan Lee, Jae‐Woong Jeong, Yuhao Liu, Yihui Zhang, Yan Shi, Seung‐Kyun Kang, Jeonghyun Kim, Jae Soon Kim, Na Yeon Lee, Bong Hoon Kim, Kyung‐In Jang, Lan Yin
SJR Q1Advanced Functional Materials

Electronics that are capable of destroying themselves, on demand and in a harmless way, might provide the ultimate form of data security. This paper presents materials and device architectures for triggered destruction of conventional microelectronic systems by means of microfluidic chemical etching of the constituent materials, including silicon, silicon dioxide, and metals (e.g., aluminum). Demonstrations in an array of home‐built metal‐oxide‐semiconductor field‐effect transistors that exploit

Biomedical EngineeringEngineering
12
Article|42 citations·2019
Simple minimally-invasive automatic antidote delivery device (A2D2) towards closed-loop reversal of opioid overdose
Bahar Dhowan, Jongcheon Lim, Michael D. MacLean, Alycia G. Berman, Min Ku Kim, Qi Yang, Jacqueline C. Linnes, Chi Hwan Lee, Craig J. Goergen, Hyowon Lee
SJR Q1Journal of Controlled ReleaseOA
ToxicologyPharmacology, Toxicology and Pharmaceutics
13
Review|40 citations·2022
Recent Progress in Development and Applications of Ionic Polymer–Metal Composite
Si Park, Sang Kim, Seong Hyun Park, Juyeon Lee, Hyungjun Kim, Min Ku Kim
SJR Q2MicromachinesOA

Electroactive polymer (EAP) is a polymer that reacts to electrical stimuli, such as voltage, and can be divided into electronic and ionic EAP by an electrical energy transfer mechanism within the polymer. The mechanism of ionic EAP is the movement of the positive ions inducing voltage change in the polymer membrane. Among the ionic EAPs, an ionic polymer-metal composite (IPMC) is composed of a metal electrode on the surface of the polymer membrane. A common material for the polymer membrane of I

Biomedical EngineeringEngineering
14
Article|37 citations·2020
Electrothermal soft manipulator enabling safe transport and handling of thin cell/tissue sheets and bioelectronic devices
Byoung Soo Kim, Min Ku Kim, Younghak Cho, Eman Hamed, Martha U. Gillette, Hyeongyun Cha, Nenad Miljkovic, Vinay K. Aakalu, Kai Kang, Kyung‐No Son, Kyle M. Schachtschneider, Lawrence B. Schook
SJR Q1Science AdvancesOA

"Living" cell sheets or bioelectronic chips have great potentials to improve the quality of diagnostics and therapies. However, handling these thin and delicate materials remains a grand challenge because the external force applied for gripping and releasing can easily deform or damage the materials. This study presents a soft manipulator that can manipulate and transport cell/tissue sheets and ultrathin wearable biosensing devices seamlessly by recapitulating how a cephalopod's suction cup work

Biomedical EngineeringEngineering
15
Article|36 citations·2020
Validation of a Novel Wearable Electromyography Patch for Monitoring Submental Muscle Activity During Swallowing: A Randomized Crossover Trial
Çagla Kantarcigil, Min Ku Kim, Taehoo Chang, Bruce Α. Craig, Anne Smith, Chi Hwan Lee, Georgia A. Malandraki
SJR Q1Journal of Speech Language and Hearing ResearchOA

Purpose Surface electromyography (sEMG) is often used for biofeedback during swallowing rehabilitation. However, commercially available sEMG electrodes are not optimized for the head and neck area, have rigid form, and are mostly available in large medical centers. We developed an ultrathin, soft, and flexible sEMG patch, specifically designed to conform to the submental anatomy and which will be ultimately incorporated into a telehealth system. To validate this first-generation sEMG patch, we c

Speech and HearingHealth Professions

Research Areas

Biomedical EngineeringSpeech and HearingCellular and Molecular NeuroscienceCivil and Structural EngineeringPublic Health, Environmental and Occupational HealthMechanical Engineering

Dive deeper into Min-Gu Kim's research on Nubint

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