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Park Yoonseok

Kyung Hee University · Engineering

About the Lab

Professor Park Yoonseok's research lab specializes in the development of advanced micro- and nanoscale devices for biomedical applications, with a focus on neuromodulation, wearable sensing, and implantable or implant-like systems. The lab pioneers multifunctional, flexible, and biocompatible interfaces for neural systems, including 3D cortical spheroids and assembloids, integrating electrical, optical, and chemical functionalities. A key direction involves creating smart, wireless, and environmentally responsive sensors for real-time monitoring of physiological and environmental parameters, particularly in clinical and neurodegenerative disease contexts. The lab also explores bioactive materials and molecular modulation strategies, such as enzyme inhibition for therapeutic applications.

neural interfaceswearable sensors3D neural modelsbiomaterialsimplantable microsystems

Research Overview

Papers
78
Total Citations
3,380
Papers (5y)
37
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
37total
2022
2023
2024
2025
2026
Citations per year (5y)
996total
20222023202420252026

Selected Papers

15
1
Article|276 citations·2021
Three-dimensional, multifunctional neural interfaces for cortical spheroids and engineered assembloids
Yoonseok Park, Colin K. Franz, Hanjun Ryu, Haiwen Luan, Kristen Y. Cotton, Jong Uk Kim, Ted S. Chung, Shiwei Zhao, Abraham Vázquez‐Guardado, Da Som Yang, Kan Li, Raudel Avila
SJR Q1Science AdvancesOA

Three-dimensional (3D), submillimeter-scale constructs of neural cells, known as cortical spheroids, are of rapidly growing importance in biological research because these systems reproduce complex features of the brain in vitro. Despite their great potential for studies of neurodevelopment and neurological disease modeling, 3D living objects cannot be studied easily using conventional approaches to neuromodulation, sensing, and manipulation. Here, we introduce classes of microfabricated 3D fram

Cellular and Molecular NeuroscienceNeuroscience
2
Article|92 citations·2020
Wireless, skin-interfaced sensors for compression therapy
Yoonseok Park, Kyeongha Kwon, Sung Soo Kwak, Da Som Yang, Jean Won Kwak, Haiwen Luan, Ted S. Chung, Keum San Chun, Jong Uk Kim, Hokyung Jang, Hanjun Ryu, Hyoyoung Jeong
SJR Q1Science AdvancesOA

Therapeutic compression garments (TCGs) are key tools for the management of a wide range of vascular lower extremity conditions. Proper use of TCGs involves application of a minimum and consistent pressure across the lower extremities for extended periods of time. Slight changes in the characteristics of the fabric and the mechanical properties of the tissues lead to requirements for frequent measurements and corresponding adjustments of the applied pressure. Existing sensors are not sufficientl

Biomedical EngineeringEngineering
3
Article|58 citations·2022
Biodegradable, three-dimensional colorimetric fliers for environmental monitoring
Hong‐Joon Yoon, Geumbee Lee, Jin‐Tae Kim, Jin-Tae Kim, Jae‐Young Yoo, Haiwen Luan, Shyuan Cheng, Soohyeon Kang, Huong Le Thien Huynh, Hyeon-Su Kim, Jaehong Park, Joohee Kim
SJR Q1Science AdvancesOA

Recently reported winged microelectronic systems offer passive flight mechanisms as a dispersal strategy for purposes in environmental monitoring, population surveillance, pathogen tracking, and other applications. Initial studies indicate potential for technologies of this type, but advances in structural and responsive materials and in aerodynamically optimized geometries are necessary to improve the functionality and expand the modes of operation. Here, we introduce environmentally degradable

Biomedical EngineeringEngineering
4
Article|52 citations·2024
Soft, full Wheatstone bridge 3D pressure sensors for cardiovascular monitoring
Yoonseok Park, Haiwen Luan, Kyeongha Kwon, Ted S. Chung, Seyong Oh, Jae‐Young Yoo, Gooyoon Chung, Junha Kim, Suhyeon Kim, Sung Soo Kwak, Junhwan Choi, Hoang‐Phuong Phan
SJR Q1npj Flexible ElectronicsOA

Abstract Variations in parameters associated with the ambient environment can introduce noise in soft, body-worn sensors. For example, many piezoresistive pressure sensors exhibit a high degree of sensitivity to fluctuations in temperature, thereby requiring active compensation strategies. The research presented here addresses this challenge with a multilayered 3D microsystem design that integrates four piezoresistive sensors in a full-Wheatstone bridge configuration. An optimized layout of the

Biomedical EngineeringEngineering
5
Article|47 citations·2006
Prolyl Endopeptidase Inhibitory Activity of Unsaturated Fatty Acids
Yoonseok Park, Hyun-Jung Jang, Kyung Ho Lee, Tae‐Ryong Hahn, Young‐Sook Paik
SJR Q1Journal of Agricultural and Food Chemistry

Prolyl endopeptidase (PEP, EC 3.4.21.26) is widely distributed in various organs, particularly in the brains of amnestic patients. Evaluation of PEP levels in postmortem brains of Alzheimer's disease patients revealed significant increases in PEP activity, suggesting that a specific PEP inhibitor can be a good candidate for an antiamnestic drug. In this study, mono- and polyunsaturated fatty acids were investigated to determine their role as PEP inhibitors. Oleic, linoleic, and arachidonic acids

OncologyMedicine
6
Article|47 citations·2016
Efficient flexible organic photovoltaics using silver nanowires and polymer based transparent electrodes
Yoonseok Park, Ludwig Bormann, Lars Müller‐Meskamp, Koen Vandewal, Karl Leo
SJR Q2Organic Electronics
Electrical and Electronic EngineeringEngineering
7
Review|46 citations·2021
Materials Chemistry of Neural Interface Technologies and Recent Advances in Three-Dimensional Systems
Yoonseok Park, Ted S. Chung, Geumbee Lee, John A. Rogers
SJR Q1Chemical Reviews

Advances in materials chemistry and engineering serve as the basis for multifunctional neural interfaces that span length scales from individual neurons to neural networks, neural tissues, and complete neural systems. Such technologies exploit electrical, electrochemical, optical, and/or pharmacological modalities in sensing and neuromodulation for fundamental studies in neuroscience research, with additional potential to serve as routes for monitoring and treating neurodegenerative diseases and

Cellular and Molecular NeuroscienceNeuroscience
8
Article|33 citations·2016
Flexible, light trapping substrates for organic photovoltaics
Yoonseok Park, Jana Berger, Zheng Tang, Lars Müller‐Meskamp, Andrés Fabián Lasagni, Koen Vandewal, Karl Leo
SJR Q1Applied Physics LettersOA

Micro-structured organic photovoltaic (OPV) devices on polyethylene terephthalate substrates are produced using direct laser interference patterning (DLIP). The performance of organic solar cells on these substrates is improved by a factor of 1.16, and a power conversion efficiency of 7.70% is achieved. We show that a shorter spatial period of the pattern allows for a stronger light trapping effect in solar cell, as it leads to a longer light path. Moreover, since the patterned structures are lo

Electrical and Electronic EngineeringEngineering
9
Article|33 citations·2016
PEDOT:PSS with embedded TiO2 nanoparticles as light trapping electrode for organic photovoltaics
Yoonseok Park, Lars Müller‐Meskamp, Koen Vandewal, Karl Leo
SJR Q1Applied Physics LettersOA

The performance of organic optoelectronic devices can be improved by employing a suitable optical cavity design beyond the standard plane layer approach, e.g., by the inclusion of periodically or randomly textured structures which increase light incoupling or extraction. One of the simplest approaches is to add an additional layer containing light scattering particles into the device stack. Solution processed poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS) thin films are prom

Polymers and PlasticsMaterials Science
10
Article|32 citations·2019
Transformable, Freestanding 3D Mesostructures Based on Transient Materials and Mechanical Interlocking
Yoonseok Park, Haiwen Luan, Kyeongha Kwon, Shiwei Zhao, Daniel Franklin, Heling Wang, Hangbo Zhao, Wubin Bai, Jong Uk Kim, Wei Lu, Jae‐Hwan Kim, Yonggang Huang
SJR Q1Advanced Functional Materials

Areas of application that span almost every class of microsystems technology, from electronics to energy storage devices to chemical/biochemical sensors, can benefit from options in engineering designs that exploit 3D micro/nanostructural layouts. Recently developed methods for forming such systems exploit stress release in prestretched elastomer substrates as a driving force for the assembly of 3D functional microdevices from 2D precursors, including those that rely on the most advanced functio

Mechanical EngineeringEngineering
11
Article|29 citations·2016
Optical display film as flexible and light trapping substrate for organic photovoltaics
Yoonseok Park, Frederik Nehm, Lars Müller‐Meskamp, Koen Vandewal, Karl Leo
SJR Q1Optics ExpressOA

We demonstrate flexible small molecular solar cells on periodically patterned plastic substrate (LCD display film) using a highly transparent poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) ( PEDOT: top and bottom encapsulation. The organic photovoltaic device (OPV) on this display film shows a power conversion efficiency of 7.48%, which is a 13.0% improvement as compared to a device fabricated on a planar poly-ethylen-terephtalate (PET) substrate (6.62%) and even higher than the efficie

Electrical and Electronic EngineeringEngineering
12
Article|25 citations·2024
Simultaneous electromechanical monitoring in engineered heart tissues using a mesoscale framework
Dominic E. Fullenkamp, Woo‐Youl Maeng, Seyong Oh, Haiwen Luan, Kyung Su Kim, Ivana A. Chychula, Jin‐Tae Kim, Jae‐Young Yoo, Cory Holgren, Alexis R. Demonbreun, Sharon A. George, Binjie Li
SJR Q1Science AdvancesOA

Engineered heart tissues (EHTs) generated from human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CMs) represent powerful platforms for human cardiac research, especially in drug testing and disease modeling. Here, we report a flexible, three-dimensional electronic framework that enables real-time, spatiotemporal analysis of electrophysiologic and mechanical signals in EHTs under physiological loading conditions for dynamic, noninvasive, longer-term assessments. These electromecha

Cellular and Molecular NeuroscienceNeuroscience
13
Article|23 citations·2025
Bioinspired, Rapidly Responsive Magnetically Tunable Stiffness Metamaterials
Gooyoon Chung, Huy Le Quang, Jung‐Hyun Kim, Jeongmin Yoo, Seung Kwon Seol, Yoonseok Park
SJR Q1Advanced MaterialsOA

Programmable mechanical materials often require dynamic stiffness adaptability, but existing solutions face challenges with slow response times and limited precision. This study introduces magnetically tunable stiffness metamaterials (MTSM) that utilize a bioinspired ternary programming framework to achieve rapid and precise stiffness modulation. Drawing inspiration from biological sarcomeres, which naturally adjust stiffness through structural changes, the MTSM design employs direct ink writing

Mechanical EngineeringEngineering
14
Article|23 citations·2018
Optical In‐Coupling in Organic Solar Cells
Yoonseok Park, Koen Vandewal, Karl Leo
SJR Q1Small MethodsOA

Abstract Organic photovoltaics have many unique properties, such as flexibility, transparency, and low weight, which allows novel applications to be addressed. A remaining challenge is to increase the power conversion efficiencies into the range that is offered by conventional inorganic photovoltaics. Due to the limited transport properties of organic materials, organic solar cells are rather thin, so that it is important to efficiently funnel light into the absorbing layers. Here, methods to im

Electrical and Electronic EngineeringEngineering
15
Review|21 citations·2021
Three dimensional bioelectronic interfaces to small-scale biological systems
Yoonseok Park, Ted S. Chung, John A. Rogers
SJR Q1Current Opinion in Biotechnology
Cellular and Molecular NeuroscienceNeuroscience

Research Areas

Biomedical EngineeringElectrical and Electronic EngineeringMechanical EngineeringCellular and Molecular NeuroscienceMaterials ChemistryDermatology

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