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고현협 교수

Hyunhyub Ko

UNIST 에너지화학공학과 · 공학

연구실 소개

고현협 교수의 연구실은 생체 피부의 미세 구조와 기능을 모방한 유연하고 다기능성 전자 피부(e-skin) 기술을 핵심으로 연구를 진행하고 있습니다. 특히, 인간 손끝의 고유한 마이크로리지와 상호연결 구조를 모방한 페로일렉트릭 및 복합 엘라스토머 기반 센서를 개발하여 정적·동적 압력, 열, 힘의 방향성까지 정밀하게 감지할 수 있는 고감도 다중 감지 기술을 구현하고 있습니다. 이는 보철물, 로봇 피부, 웨어러블 헬스 모니터링 기기 등 미래형 의료 및 로봇 기술의 핵심 기반 기술로 응용되고 있습니다.

전자 피부다중 감지생체 모방유연 센서마이크로리지

연구 현황

논문 수
215
총 인용 수
18,618
최근 5년 논문
54
주요 분야
공학

연구 성과 추이

표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.

5개년 연도별 논문 게재 수
54총합
2022
2023
2024
2025
2026
5개년 연도별 피인용 수
1,337총합
20222023202420252026

주요 논문

15
1
논문|인용수 936·2015
Fingertip skin–inspired microstructured ferroelectric skins discriminate static/dynamic pressure and temperature stimuli
Jonghwa Park, Marie Kim, Youngoh Lee, Heon Sang Lee, Hyunhyub Ko
SJR Q1Science AdvancesOA

In human fingertips, the fingerprint patterns and interlocked epidermal-dermal microridges play a critical role in amplifying and transferring tactile signals to various mechanoreceptors, enabling spatiotemporal perception of various static and dynamic tactile signals. Inspired by the structure and functions of the human fingertip, we fabricated fingerprint-like patterns and interlocked microstructures in ferroelectric films, which can enhance the piezoelectric, pyroelectric, and piezoresistive

Biomedical EngineeringEngineering
2
논문|인용수 897·2014
Giant Tunneling Piezoresistance of Composite Elastomers with Interlocked Microdome Arrays for Ultrasensitive and Multimodal Electronic Skins
Jonghwa Park, Youngoh Lee, Jaehyung Hong, Minjeong Ha, Young-Do Jung, Hyuneui Lim, Sung Youb Kim, Hyunhyub Ko
SJR Q1ACS Nano

The development of flexible electronic skins with high sensitivities and multimodal sensing capabilities is of great interest for applications ranging from human healthcare monitoring to robotic skins to prosthetic limbs. Although piezoresistive composite elastomers have shown great promise in this area of research, typically poor sensitivities and low response times, as well as signal drifts with temperature, have prevented further development of these materials in electronic skin applications.

Biomedical EngineeringEngineering
3
리뷰|인용수 787·2008
Nanostructured Surfaces and Assemblies as SERS Media
Hyunhyub Ko, Srikanth Singamaneni, Vladimir V. Tsukruk
SJR Q1Small

Metallic nanostructures attract much interest as an efficient media for surface-enhanced Raman scattering (SERS). Significant progress has been made on the synthesis of metal nanoparticles with various shapes, composition, and controlled plasmonic properties, all critical for an efficient SERS response. For practical applications, efficient strategies of assembling metal nanoparticles into organized nanostructures are paramount for the fabrication of reproducible, stable, and highly active SERS

Electronic, Optical and Magnetic MaterialsMaterials Science
4
논문|인용수 640·2014
Tactile-Direction-Sensitive and Stretchable Electronic Skins Based on Human-Skin-Inspired Interlocked Microstructures
Jonghwa Park, Youngoh Lee, Jaehyung Hong, Youngsu Lee, Minjeong Ha, Youngdo Jung, Hyuneui Lim, Sung Youb Kim, Hyunhyub Ko
SJR Q1ACS Nano

Stretchable electronic skins with multidirectional force-sensing capabilities are of great importance in robotics, prosthetics, and rehabilitation devices. Inspired by the interlocked microstructures found in epidermal-dermal ridges in human skin, piezoresistive interlocked microdome arrays are employed for stress-direction-sensitive, stretchable electronic skins. Here we show that these arrays possess highly sensitive detection capability of various mechanical stimuli including normal, shear, s

Biomedical EngineeringEngineering
5
논문|인용수 504·2018
Flexible Ferroelectric Sensors with Ultrahigh Pressure Sensitivity and Linear Response over Exceptionally Broad Pressure Range
Youngoh Lee, Jonghwa Park, Soowon Cho, Young‐Eun Shin, Hochan Lee, Jinyoung Kim, Jinyoung Myoung, Seungse Cho, Saewon Kang, Chunggi Baig, Hyunhyub Ko
SJR Q1ACS Nano

Flexible pressure sensors with a high sensitivity over a broad linear range can simplify wearable sensing systems without additional signal processing for the linear output, enabling device miniaturization and low power consumption. Here, we demonstrate a flexible ferroelectric sensor with ultrahigh pressure sensitivity and linear response over an exceptionally broad pressure range based on the material and structural design of ferroelectric composites with a multilayer interlocked microdome geo

Biomedical EngineeringEngineering
6
논문|인용수 460·2019
Mimicking Human and Biological Skins for Multifunctional Skin Electronics
Youngoh Lee, Jonghwa Park, Ayoung Choe, Seungse Cho, Jinyoung Kim, Hyunhyub Ko
SJR Q1Advanced Functional Materials

Abstract Electronic skin (e‐skin) technology is an exciting frontier to drive the next generation of wearable electronics owing to its high level of wearability, enabling high accuracy to harvest information of users and their surroundings. Recently, biomimicry of human and biological skins has become a great inspiration for realizing novel wearable electronic systems with exceptional multifunctionality as well as advanced sensory functions. This review covers and highlights bioinspired e‐skins

Biomedical EngineeringEngineering
7
논문|인용수 412·2010
Ultrathin compound semiconductor on insulator layers for high-performance nanoscale transistors
Hyunhyub Ko, Kuniharu Takei, Rehan Kapadia, Steven S. C. Chuang, Hui Fang, Paul W. Leu, Kartik Ganapathi, E. Plis, Ha Sul Kim, Szu‐Ying Chen, Morten Madsen, Alexandra C. Ford
SJR Q1NatureOA
Electrical and Electronic EngineeringEngineering
8
논문|인용수 397·2015
Bioinspired Interlocked and Hierarchical Design of ZnO Nanowire Arrays for Static and Dynamic Pressure‐Sensitive Electronic Skins
Minjeong Ha, Seongdong Lim, Jonghwa Park, Doo‐Seung Um, Youngoh Lee, Hyunhyub Ko
SJR Q1Advanced Functional Materials

The development of electronic skin (e‐skin) is of great importance in human‐like robotics, healthcare, wearable electronics, and medical applications. In this paper, a bioinspired e‐skin design of hierarchical micro‐ and nano‐structured ZnO nanowire (NW) arrays in an interlocked geometry is suggested for the sensitive detection of both static and dynamic tactile stimuli through piezoresistive and piezoelectric transduction modes, respectively. The interlocked hierarchical structures enable a str

Biomedical EngineeringEngineering
9
논문|인용수 357·2017
Large-Area Cross-Aligned Silver Nanowire Electrodes for Flexible, Transparent, and Force-Sensitive Mechanochromic Touch Screens
Seungse Cho, Saewon Kang, Ashish Pandya, Ravi Shanker, Ziyauddin Khan, Youngsu Lee, Jonghwa Park, Stephen L. Craig, Hyunhyub Ko
SJR Q1ACS Nano

Silver nanowire (AgNW) networks are considered to be promising structures for use as flexible transparent electrodes for various optoelectronic devices. One important application of AgNW transparent electrodes is the flexible touch screens. However, the performances of flexible touch screens are still limited by the large surface roughness and low electrical to optical conductivity ratio of random network AgNW electrodes. In addition, although the perception of writing force on the touch screen

Biomedical EngineeringEngineering
10
논문|인용수 347·2018
Wearable and flexible sensors for user-interactive health-monitoring devices
Minjeong Ha, Seongdong Lim, Hyunhyub Ko
SJR Q1Journal of Materials Chemistry B

Flexible electronic devices that are lightweight and wearable are critical for personal healthcare systems, which are not restricted by time and space. To monitor human bio-signals in a non-invasive manner, skin-conforming, highly sensitive, reliable, and sustainable healthcare monitoring devices are required. In this review, we introduce flexible and wearable sensors based on engineered functional nano/micro-materials with unique sensing capabilities for detection of physical and electrophysiol

Biomedical EngineeringEngineering
11
논문|인용수 299·2018
Skin-Inspired Hierarchical Polymer Architectures with Gradient Stiffness for Spacer-Free, Ultrathin, and Highly Sensitive Triboelectric Sensors
Minjeong Ha, Seongdong Lim, Soowon Cho, Youngoh Lee, Sangyun Na, Chunggi Baig, Hyunhyub Ko
SJR Q1ACS Nano

The gradient stiffness between stiff epidermis and soft dermis with interlocked microridge structures in human skin induces effective stress transmission to underlying mechanoreceptors for enhanced tactile sensing. Inspired by skin structure and function, we fabricate hierarchical nanoporous and interlocked microridge structured polymers with gradient stiffness for spacer-free, ultrathin, and highly sensitive triboelectric sensors (TESs). The skin-inspired hierarchical polymers with gradient ela

Biomedical EngineeringEngineering
12
논문|인용수 233·2015
Capillary Printing of Highly Aligned Silver Nanowire Transparent Electrodes for High-Performance Optoelectronic Devices
Saewon Kang, Taehyo Kim, Seungse Cho, Youngoh Lee, Ayoung Choe, Bright Walker, Seo‐Jin Ko, Jin Young Kim, Hyunhyub Ko
SJR Q1Nano Letters

Percolation networks of silver nanowires (AgNWs) are commonly used as transparent conductive electrodes (TCEs) for a variety of optoelectronic applications, but there have been no attempts to precisely control the percolation networks of AgNWs that critically affect the performances of TCEs. Here, we introduce a capillary printing technique to precisely control the NW alignment and the percolation behavior of AgNW networks. Notably, partially aligned AgNW networks exhibit a greatly lower percola

Electrical and Electronic EngineeringEngineering
13
논문|인용수 227·2016
Octopus‐Inspired Smart Adhesive Pads for Transfer Printing of Semiconducting Nanomembranes
Hochan Lee, Doo‐Seung Um, Youngsu Lee, Seongdong Lim, Hyung‐jun Kim, Hyunhyub Ko
SJR Q1Advanced Materials

By mimicking muscle actuation to control cavity-pressure-induced adhesion of octopus suckers, smart adhesive pads are developed in which the thermoresponsive actuation of a hydrogel layer on elastomeric microcavity pads enables excellent switchable adhesion in response to a thermal stimulus (maximum adhesive strength: 94 kPa, adhesion switching ratio: ≈293 for temperature change between 22 and 61 °C).

Biomedical EngineeringEngineering
14
논문|인용수 219·2018
Transparent and conductive nanomembranes with orthogonal silver nanowire arrays for skin-attachable loudspeakers and microphones
Saewon Kang, Seungse Cho, Ravi Shanker, Hochan Lee, Jonghwa Park, Doo‐Seung Um, Youngoh Lee, Hyunhyub Ko
SJR Q1Science AdvancesOA

We demonstrate ultrathin, transparent, and conductive hybrid nanomembranes (NMs) with nanoscale thickness, consisting of an orthogonal silver nanowire array embedded in a polymer matrix. Hybrid NMs significantly enhance the electrical and mechanical properties of ultrathin polymer NMs, which can be intimately attached to human skin. As a proof of concept, we present a skin-attachable NM loudspeaker, which exhibits a significant enhancement in thermoacoustic capabilities without any significant h

Biomedical EngineeringEngineering
15
리뷰|인용수 216·2024
Soft Sensors and Actuators for Wearable Human–Machine Interfaces
Jonghwa Park, Youngoh Lee, Seungse Cho, Ayoung Choe, Jeonghee Yeom, Yun Goo Ro, Jinyoung Kim, Donghee Kang, Seungjae Lee, Hyunhyub Ko
SJR Q1Chemical Reviews

Haptic human-machine interfaces (HHMIs) combine tactile sensation and haptic feedback to allow humans to interact closely with machines and robots, providing immersive experiences and convenient lifestyles. Significant progress has been made in developing wearable sensors that accurately detect physical and electrophysiological stimuli with improved softness, functionality, reliability, and selectivity. In addition, soft actuating systems have been developed to provide high-quality haptic feedba

Biomedical EngineeringEngineering

대표 연구 분야

Biomedical EngineeringElectrical and Electronic EngineeringElectronic, Optical and Magnetic MaterialsMaterials ChemistryMechanical EngineeringMechanics of Materials

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