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Lee Min Hyung

Kyung Hee University · Materials Science

About the Lab

Professor Lee Min Hyung's research lab specializes in advanced nanomaterials and energy conversion technologies, with a strong focus on electrocatalysis for sustainable carbon dioxide conversion, photoelectrochemical hydrogen production, and triboelectric nanogenerators for renewable energy harvesting. The lab develops innovative surface engineering strategies—such as nanotexturing, atomic-level functionalization, and morphological control—to enhance the performance and selectivity of catalytic and energy-harvesting materials. Key research directions include designing selective copper-based electrocatalysts for C2+ hydrocarbon production, optimizing p-type photocathodes for hydrogen evolution, and enabling flexible, high-performance triboelectric devices through material property modulation.

electrocatalysistriboenergysurface engineeringnanomaterialssustainable energy

Research Overview

Papers
321
Total Citations
7,345
Papers (5y)
62
Primary Field
Materials Science

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
62total
2022
2023
2024
2025
2026
Citations per year (5y)
523total
20222023202420252026

Selected Papers

15
1
Article|349 citations·2016
Morphology‐Directed Selective Production of Ethylene or Ethane from CO2 on a Cu Mesopore Electrode
Ki Dong Yang, Woo Ri Ko, Junho Lee, Sung Jae Kim, Hyomin Lee, Min Hyung Lee, Ki Tae Nam
SJR Q1Angewandte Chemie International Edition

Abstract The electrocatalytic conversion of CO 2 to value‐added hydrocarbons is receiving significant attention as a promising way to close the broken carbon‐cycle. While most metal catalysts produce C 1 species, such as carbon monoxide and formate, the production of various hydrocarbons and alcohols comprising more than two carbons has been achieved using copper (Cu)‐based catalysts only. Methods for producing specific C 2 reduction outcomes with high selectivity, however, are not available thu

Renewable Energy, Sustainability and the EnvironmentEnergy
2
Article|271 citations·2012
p‐Type InP Nanopillar Photocathodes for Efficient Solar‐Driven Hydrogen Production
Min Hyung Lee, Kuniharu Takei, Junjun Zhang, Rehan Kapadia, Maxwell Zheng, Yuze Chen, Junghyo Nah, Tyler S. Matthews, Yu‐Lun Chueh, Joel W. Ager, Ali Javey
SJR Q1Angewandte Chemie International Edition

Perfect texture: The roles of surface nanotexturing, TiO2 passivation, and a ruthenium cocatalyst on the photoelectrochemical evolution of hydrogen by using p-InP photocathodes are investigated. Higher current densities and more favorable onset potentials are observed after surface nanotexturing. NHE=normal hydrogen electrode. Detailed facts of importance to specialist readers are published as ”Supporting Information”. Such documents are peer-reviewed, but not copy-edited or typeset. They are ma

Renewable Energy, Sustainability and the EnvironmentEnergy
3
Article|262 citations·2015
Triboelectric Charging Sequence Induced by Surface Functionalization as a Method To Fabricate High Performance Triboelectric Generators
Sung-Ho Shin, Yang Hyeog Kwon, Young-Hwan Kim, Joo‐Yun Jung, Min Hyung Lee, Junghyo Nah
SJR Q1ACS Nano

Two different materials, apart from each other in a triboelectric series, are required to fabricate high performance triboelectric generators (TEGs). Thus, it often limits the choices of materials and causes related processing issues for TEGs. To address this issue, we report a simple surface functionalization method that can effectively change the triboelectric charging sequence of the materials, broadening material choices and enhancing the performance of TEGs. Specifically, we functionalized

Biomedical EngineeringEngineering
4
Article|237 citations·2017
Formation of Triboelectric Series via Atomic-Level Surface Functionalization for Triboelectric Energy Harvesting
Sung‐Ho Shin, Young Eun Bae, Hyun Kyung Moon, Jungkil Kim, Suk‐Ho Choi, Yongho Kim, Hyo Jae Yoon, Min Hyung Lee, Junghyo Nah
SJR Q1ACS Nano

Triboelectric charging involves frictional contact of two different materials, and their contact electrification usually relies on polarity difference in the triboelectric series. This limits the choices of materials for triboelectric contact pairs, hindering research and development of energy harvest devices utilizing triboelectric effect. A progressive approach to resolve this issue involves modification of chemical structures of materials for effectively engineering their triboelectric proper

Biomedical EngineeringEngineering
5
Article|176 citations·2018
Highly selective and sensitive chemoresistive humidity sensors based on rGO/MoS2 van der Waals composites
Seo Yun Park, Yeonhoo Kim, Seon Yong Lee, Woonbae Sohn, Jung Eun Lee, Do Hong Kim, Young-Seok Shim, Ki Chang Kwon, Kyoung Soon Choi, Hee Joun Yoo, Jun Min Suh, Museok Ko
SJR Q1Journal of Materials Chemistry A

Sensors based on 2D rGO/2D MoS<sub>2</sub> van der Waals hybrid composites exhibited high sensitivity, extreme selectivity, fast response/recovery, and good reliability to humidity detection.

Electrical and Electronic EngineeringEngineering
6
Article|173 citations·2017
Room temperature humidity sensors based on rGO/MoS2 hybrid composites synthesized by hydrothermal method
Seo Yun Park, Jung Eun Lee, Yeonhoo Kim, Jason J. Kim, Young‐Seok Shim, Soo Young Kim, Min Hyung Lee, Ho Won Jang
SJR Q1Sensors and Actuators B Chemical
Electrical and Electronic EngineeringEngineering
7
Article|162 citations·2010
Programmable Soft Lithography: Solvent-Assisted Nanoscale Embossing
Min Hyung Lee, Mark D. Huntington, Wei Zhou, Jiun-Chan Yang, Teri W. Odom
SJR Q1Nano Letters

This paper reports an all-moldable nanofabrication platform that can generate, from a single master, large-area nanoscale patterns with programmable densities, fill factors, and lattice symmetries. Solvent-assisted nanoscale embossing (SANE) could increase the spacing of patterns up to 100% as well as decrease them down to 50% in a single step by stretching or heating a polymer substrate. Also, SANE could reduce critical feature sizes as small as 45% compared to the master by controlled swelling

Biomedical EngineeringEngineering
8
Article|120 citations·2019
Reusable Polybenzimidazole Nanofiber Membrane Filter for Highly Breathable PM2.5 Dust Proof Mask
Sol Lee, A Ra Cho, Daehoon Park, Jae Kyeom Kim, Kyung Seok Han, Ick‐Jae Yoon, Min Hyung Lee, Junghyo Nah
SJR Q1ACS Applied Materials & Interfaces

Ultrafine particulate matters (PMs) are an imminent threat to the human respiratory system, as their sizes are comparable to and even smaller than human tissues. To cope with this situation, researchers have developed and commercialized various personal dust proof masks. However, because of the relatively thick filter membrane to guarantee filtering efficiency, a huge pressure drop across the active filter layer is inevitable and breathing through it becomes uncomfortable. In this work, we inves

Electrical and Electronic EngineeringEngineering
9
Article|74 citations·2017
Catalytic synergy effect of MoS2/reduced graphene oxide hybrids for a highly efficient hydrogen evolution reaction
Jung Eun Lee, Jaemin Jung, Taeg Yeoung Ko, Sujin Kim, Seong-Il Kim, Junghyo Nah, Sunmin Ryu, Ki Tae Nam, Min Hyung Lee
SJR Q1RSC AdvancesOA

GO content tuning gradually enhanced the HER catalytic performance of the MoS<sub>2</sub>/rGO hybrids, decreasing the Tafel slope from 82 to 48 mV per decade owing to an increase of catalytically active areas and an electronic transition of MoS<sub>2</sub>.

Renewable Energy, Sustainability and the EnvironmentEnergy
10
Article|73 citations·2015
Hierarchically structured reduced graphene oxide/WO3 frameworks for an application into lithium ion battery anodes
Sul Ki Park, Hyun Joo Lee, Min Hyung Lee, Ho Seok Park
SJR Q1Chemical Engineering Journal
Electrical and Electronic EngineeringEngineering
11
Article|68 citations·2011
Roll-to-Roll Anodization and Etching of Aluminum Foils for High-Throughput Surface Nanotexturing
Min Hyung Lee, Namsoo Lim, Daniel J. Ruebusch, Arash Jamshidi, Rehan Kapadia, Rebecca Lee, Tae Joon Seok, Kuniharu Takei, Kee Young Cho, Zhiyong Fan, Hwanung Jang, Ming C. Wu
SJR Q1Nano Letters

A high-throughput process for nanotexturing of hard and soft surfaces based on the roll-to-roll anodization and etching of low-cost aluminum foils is presented. The process enables the precise control of surface topography, feature size, and shape over large areas thereby presenting a highly versatile platform for fabricating substrates with user-defined, functional performance. Specifically, the optical and surface wetting properties of the foil substrates were systematically characterized and

Biomedical EngineeringEngineering
12
Article|68 citations·2016
Morphology‐Directed Selective Production of Ethylene or Ethane from CO2 on a Cu Mesopore Electrode
Ki Dong Yang, Woo Ri Ko, Junho Lee, Sung Jae Kim, Hyomin Lee, Min Hyung Lee, Ki Tae Nam
Angewandte Chemie

Abstract The electrocatalytic conversion of CO 2 to value‐added hydrocarbons is receiving significant attention as a promising way to close the broken carbon‐cycle. While most metal catalysts produce C 1 species, such as carbon monoxide and formate, the production of various hydrocarbons and alcohols comprising more than two carbons has been achieved using copper (Cu)‐based catalysts only. Methods for producing specific C 2 reduction outcomes with high selectivity, however, are not available thu

Renewable Energy, Sustainability and the EnvironmentEnergy
13
Article|67 citations·2015
A vanadium-doped ZnO nanosheets–polymer composite for flexible piezoelectric nanogenerators
Sung-Ho Shin, Yang Hyeog Kwon, Min Hyung Lee, Joo‐Yun Jung, Jae Hun Seol, Junghyo Nah
SJR Q1Nanoscale

We report high performance flexible piezoelectric nanogenerators (PENGs) by employing vanadium (V)-doped ZnO nanosheets (NSs) and the polydimethylsiloxane (PDMS) composite structure. The V-doped ZnO NSs were synthesized to overcome the inherently low piezoelectric properties of intrinsic ZnO. Ferroelectric phase transition induced in the V-doped ZnO NSs contributed to significantly improve the performance of the PENGs after the poling process. Consequently, the PENGs exhibited high output voltag

Biomedical EngineeringEngineering
14
Article|62 citations·2017
Dual-Functional Electrocatalyst Derived from Iron-Porphyrin-Encapsulated Metal–Organic Frameworks
Jungwon Park, Hyunjoon Lee, Young Eun Bae, Kyoung Chul Park, Hoon Ji, Nak Cheon Jeong, Min Hyung Lee, Oh Joong Kwon, Chang Yeon Lee
SJR Q1ACS Applied Materials & Interfaces

Active, stable electrocatalysts based on non-precious metals for the oxygen reduction reaction (ORR) and hydrogen evolution reaction (HER) are critical for the development of cost-effective, efficient renewable energy technologies. Here, Fe/Fe 3 C-embedded nitrogen-doped carbon was fabricated via pyrolysis of iron-porphyrin-encapsulated mesoporous metal–organic frameworks [PCN-333 (Fe), where “PCN” stands for “porous coordination network”] at 700 °C. The various characterization techniques confi

Renewable Energy, Sustainability and the EnvironmentEnergy
15
Article|60 citations·2023
Effect of Rare-Earth Element Doping on NiFe-Layered Double Hydroxides for Water Oxidation at Ultrahigh Current Densities
Cu Dang Van, Sang Hoon Kim, Minho Kim, Min Hyung Lee
SJR Q1ACS Sustainable Chemistry & Engineering

Electrochemical energy conversion processes such as water reduction to produce hydrogen and carbon dioxide reduction into valuable carbon products have attracted great attention as alternative green energy technologies to fossil fuels. Nevertheless, the conversion efficiency and long-term stability of these technologies remain very far from the requirements for industrial applications because of the sluggish kinetics of the oxygen evolution reaction (OER). In this study, La-doped NiFe-layered do

Renewable Energy, Sustainability and the EnvironmentEnergy

Research Areas

Materials ChemistryElectrical and Electronic EngineeringBiomedical EngineeringRenewable Energy, Sustainability and the EnvironmentMolecular BiologyElectronic, Optical and Magnetic Materials

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