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Jahyun Koo

Korea University · Engineering

About the Lab

Professor Jahyun Koo's research lab specializes in the development of biodegradable and bio-integrated electronic systems for advanced medical applications. The lab focuses on creating implantable and wearable devices that enable real-time, wireless monitoring and controlled therapeutic interventions—such as programmable drug release and nerve stimulation—while ensuring complete biological resorption after use. Key research directions include soft microfluidics for sweat analysis, biodegradable conductive materials, and ultra-low-power bioelectronic circuits for chronic physiological monitoring.

biodegradable electronicsimplantable sensorswearable diagnosticsbio-integrated deviceswireless bioelectronics

Research Overview

Papers
92
Total Citations
5,005
Papers (5y)
44
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
44total
2021
2022
2023
2024
2025
Citations per year (5y)
1,547total
20212022202320242025

Selected Papers

15
1
Article|485 citations·2018
Wireless bioresorbable electronic system enables sustained nonpharmacological neuroregenerative therapy
Jahyun Koo, Matthew R. MacEwan, Seung‐Kyun Kang, Sang Min Won, Manu Stephen, Paul Gamble, Zhaoqian Xie, Yan Yan, Yu-Yu Chen, Jiho Shin, Nathan Birenbaum, Sang‐Jin Chung
SJR Q1Nature Medicine
Cellular and Molecular NeuroscienceNeuroscience
2
Article|153 citations·2020
Wirelessly controlled, bioresorbable drug delivery device with active valves that exploit electrochemically triggered crevice corrosion
Jahyun Koo, Sung Bong Kim, Yeon Sik Choi, Zhaoqian Xie, Amay J. Bandodkar, Jawad M. Khalifeh, Ying Yan, Hojun Kim, Maryam Kherad Pezhouh, Karen Doty, Geumbee Lee, Yu-Yu Chen
SJR Q1Science AdvancesOA

Implantable drug release platforms that offer wirelessly programmable control over pharmacokinetics have potential in advanced treatment protocols for hormone imbalances, malignant cancers, diabetic conditions, and others. We present a system with this type of functionality in which the constituent materials undergo complete bioresorption to eliminate device load from the patient after completing the final stage of the release process. Here, bioresorbable polyanhydride reservoirs store drugs in

Materials ChemistryMaterials Science
3
Article|147 citations·2020
Soft, skin-interfaced microfluidic systems with integrated immunoassays, fluorometric sensors, and impedance measurement capabilities
Sungbong Kim, Bo-Ram Lee, Jonathan T. Reeder, Seon Hee Seo, Sung-Uk Lee, Aurélie Hourlier‐Fargette, Joonchul Shin, Yurina Sekine, Hyoyoung Jeong, Yong Suk Oh, Alexander J. Aranyosi, Stephen P. Lee
SJR Q1Proceedings of the National Academy of SciencesOA

Soft microfluidic systems that capture, store, and perform biomarker analysis of microliter volumes of sweat, in situ, as it emerges from the surface of the skin, represent an emerging class of wearable technology with powerful capabilities that complement those of traditional biophysical sensing devices. Recent work establishes applications in the real-time characterization of sweat dynamics and sweat chemistry in the context of sports performance and healthcare diagnostics. This paper presents

Biomedical EngineeringEngineering
4
Review|75 citations·2021
A review of wearable biosensors for sweat analysis
Seongbin Jo, Daeun Sung, Sungbong Kim, Jahyun Koo
SJR Q2Biomedical Engineering LettersOA
Biomedical EngineeringEngineering
5
Article|46 citations·2021
Biodegradable Molybdenum/Polybutylene Adipate Terephthalate Conductive Paste for Flexible and Stretchable Transient Electronics
Kyung‐Sub Kim, Jaeyoung Yoo, Jun‐Seok Shim, Young‐In Ryu, Su-Yeon Choi, Ju‐Yong Lee, Hyuck Mo Lee, Jahyun Koo, Seung‐Kyun Kang
SJR Q1Advanced Materials Technologies

Abstract Biodegradable or eco‐degradable electronics is an emerging field of technology capable of reducing the excessively increasing electronic waste originating from the rapid development of personalized and bio‐integrated devices and skin adhesive patches. Through an advantageous solution process, biodegradable conductive pastes can be employed in various applications of soft and flexible devices. Herein a biodegradable conductive paste composed of molybdenum (Mo) microparticles and polybuty

Biomedical EngineeringEngineering
6
Review|44 citations·2022
Electroceuticals for peripheral nerve regeneration
Woo‐Youl Maeng, Wan‐Ling Tseng, Song Li, Jahyun Koo, Yuan‐Yu Hsueh
SJR Q1BiofabricationOA

Abstract Electroceuticals provide promising opportunities for peripheral nerve regeneration, in terms of modulating the extensive endogenous tissue repair mechanisms between neural cell body, axons and target muscles. However, great challenges remain to deliver effective and controllable electroceuticals via bioelectronic implantable device. In this review, the modern fabrication methods of bioelectronic conduit for bridging critical nerve gaps after nerve injury are summarized, with regard to c

Cellular and Molecular NeuroscienceNeuroscience
7
Article|41 citations·2014
New Sn–0.7Cu-based solder alloys with minor alloying additions of Pd, Cr and Ca
Jahyun Koo, Jae‐Won Chang, Young Woo Lee, Sung Jea Hong, Keun‐Soo Kim, Hyuck Mo Lee
SJR Q1Journal of Alloys and Compounds
Electrical and Electronic EngineeringEngineering
8
Article|34 citations·2023
Battery‐Free, Wireless, Cuff‐Type, Multimodal Physical Sensor for Continuous Temperature and Strain Monitoring of Nerve
Seunghwan Kim, Yong Suk Oh, Kwanghyoung Lee, Seongchan Kim, Woo‐Youl Maeng, Kyung Su Kim, Ga‐Been Kim, Seokjoo Cho, Hyeonseok Han, Hyunwoo Park, Mengqiu Wang, Raudel Avila
SJR Q1Small

Peripheral nerve injuries cause various disabilities related to loss of motor and sensory functions. The treatment of these injuries typically requires surgical operations for improving functional recovery of the nerve. However, capabilities for continuous nerve monitoring remain a challenge. Herein, a battery-free, wireless, cuff-type, implantable, multimodal physical sensing platform for continuous in vivo monitoring of temperature and strain from the injured nerve is introduced. The thin, sof

Biomedical EngineeringEngineering
9
Article|29 citations·2015
Microstructural discovery of Al addition on Sn–0.5Cu-based Pb-free solder design
Jahyun Koo, Changsoo Lee, Sung Jea Hong, Keun‐Soo Kim, Hyuck Mo Lee
SJR Q1Journal of Alloys and Compounds
Electrical and Electronic EngineeringEngineering
10
Article|29 citations·2025
Electrophoretic digital colorimetry integrated with electrochemical sweat sensor
Daeun Sung, Seunghun Han, Sumin Kim, Heeseok Kang, Bon Jekal, Giheon Kim, Jaewon Kim, Minki Hong, G. J. Moon, Sungeun Kim, Y. S. Lee, Suk‐Won Hwang
SJR Q1Science AdvancesOA

Recent advancements in wearable sweat sensors, which use standardized electrochemical and colorimetric mechanisms, offer holistic representation of health status for users. However, the constraints of standardized sweat sensors present ongoing challenges to realization of personalized health management. This study presents an electrocolorimetric (EC) platform that enables the reversible and multiple-time use of colorimetric data visualization using electrophoretic display (EPD). This platform re

Biomedical EngineeringEngineering
11
Article|29 citations·2016
Ethylenediamine-Enhanced Oxidation Resistivity of a Copper Surface during Water-Based Copper Nanowire Synthesis
Jahyun Koo, Soonho Kwon, Na Rae Kim, Kihyun Shin, Hyuck Mo Lee
SJR Q1The Journal of Physical Chemistry C

Copper nanowires (Cu NWs) are promising materials for transparent electrode applications. However, their growth mechanism during water-based synthesis remains unclear. The steric hindrance of a surfactant, which has been considered in previous studies, is insufficient to explain the suppression of Cu oxide formation during water-based synthesis. In this paper, we suggest that ethylenediamine (EDA, C 2 H 4 (NH 2 ) 2 ), which is commonly used as a structure-directing agent (SDA), may play an impor

Electrical and Electronic EngineeringEngineering
12
Article|27 citations·2021
Structural Effectiveness of AgCl-decorated Ag Nanowires Enhancing Oxygen Reduction
Su-Yeon Choi, Youngtae Park, Jungwoo Choi, Changsoo Lee, Hyun‐Seok Cho, Changhee Kim, Jahyun Koo, Hyuck Mo Lee
SJR Q1ACS Sustainable Chemistry & Engineering

In anion exchange membrane fuel cells (AEMFCs) for green energy, silver (Ag)-based compounds are promising non-Pt electrocatalysts with high catalytic activity and a low cost for the oxygen reduction reaction (ORR). Although silver chloride (AgCl) shows high catalytic activity due to the ligand effect originating from the electronegativity difference between the two elements, its low electroconductivity remains a significant issue. Here, we report Ag-AgCl core–shell nanowires decorated with AgCl

Renewable Energy, Sustainability and the EnvironmentEnergy
13
Article|18 citations·2023
Isotropic conductive paste for bioresorbable electronics
Kyung Su Kim, Woo‐Youl Maeng, Seongchan Kim, Gyubok Lee, Minki Hong, Ga‐Been Kim, Jaewon Kim, Sungeun Kim, Seunghun Han, Jaeyoung Yoo, Hyojin Lee, Kangwon Lee
SJR Q1Materials Today BioOA

Bioresorbable implantable medical devices can be employed in versatile clinical scenarios that burden patients with complications and surgical removal of conventional devices. However, a shortage of suitable electricalinterconnection materials limits the development of bioresorbable electronic systems. Therefore, this study highlights a highly conductive, naturally resorbable paste exhibiting enhanced electrical conductivity and mechanical stability that can solve the existing problems of biores

Polymers and PlasticsMaterials Science
14
Article|15 citations·2025
3D printed biodegradable hydrogel-based multichannel nerve conduits mimicking peripheral nerve fascicules
Woo‐Youl Maeng, Yerim Lee, Szu-Han Chen, Kyung Su Kim, Daeun Sung, Wan‐Ling Tseng, Gyu‐Nam Kim, Young‐Hag Koh, Yuan‐Yu Hsueh, Jahyun Koo
SJR Q1Materials Today BioOA

Treating peripheral nerve injury (PNI) is a prevalent clinical challenge. The improper dispersion of regenerating axons makes it difficult to develop nerve guidance conduits (NGCs) for treating PNI. The multichannel NGCs, designed to mimic the fascicular structure of nerves, are proposed as an alternative to single hollow lumen NGCs. Hydrogel-based NGCs with microscale multichannels resembling actual nerve fascicles are fabricated using digital light processing as 3D printing. Gelatin methacrylo

Biomedical EngineeringEngineering
15
Article|8 citations·2020
Integration of Ultrathin Silicon and Metal Nanowires for High‐Performance Transparent Electronics
Jahyun Koo, Changsoo Lee, Cho Rong Chu, Seung‐Kyun Kang, Hyuck Mo Lee
SJR Q1Advanced Materials Technologies

Abstract Transparent conducting electrodes (TCE) using metal (Cu and Ag) nanowires (NWs) have received great attention, due to their high conductivity, flexibility, and transparency, as alternatives for conventional conductive oxides. Hybridizing with semiconductor, the metal NWs TCE allows for transparent, flexible but high‐performance functional devices such as logical circuit and active device components. However, the electrical performance of hybrid metal NWs/organic semiconductor is still l

Electrical and Electronic EngineeringEngineering

Research Areas

Biomedical EngineeringElectrical and Electronic EngineeringCellular and Molecular NeuroscienceMaterials ChemistryAutomotive EngineeringCardiology and Cardiovascular Medicine

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