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SeungNam Cha

Sungkyunkwan University · Materials Science

About the Lab

Professor SeungNam Cha's research lab specializes in the development and fundamental understanding of two-dimensional (2D) nanomaterials and nanostructured devices for next-generation flexible, wearable, and self-powered electronics. The lab focuses on advancing energy conversion and storage technologies through innovative materials design, including piezoelectric nanowires, hierarchical nanostructured electrodes for supercapacitors, and van der Waals heterostructures. Key research directions include strain engineering of 2D semiconductor devices, large-scale synthesis of high-quality monolayer transition metal dichalcogenides, and the integration of these materials into flexible and fiber-based platforms for sustainable energy applications.

2D materialsenergy storageflexible electronicsstrain engineeringnanomaterials

Research Overview

Papers
146
Total Citations
5,880
Papers (5y)
47
Primary Field
Materials Science

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
47total
2022
2023
2024
2025
2026
Citations per year (5y)
667total
20222023202420252026

Selected Papers

15
1
Article|379 citations·2011
Porous PVDF As Effective Sonic Wave Driven Nanogenerators
SeungNam Cha, Seong Min Kim, Hyunjin Kim, JiYeon Ku, Jung Inn Sohn, Young Jun Park, Byong Gwon Song, Myoung Hoon Jung, Eun Kyung Lee, Byoung Lyong Choi, Jong Jin Park, Zhong Lin Wang
SJR Q1Nano Letters

Piezomaterials are known to display enhanced energy conversion efficiency at nanoscale due to geometrical effect and improved mechanical properties. Although piezoelectric nanowires have been the most widely and dominantly researched structure for this application, there only exist a limited number of piezomaterials that can be easily manufactured into nanowires, thus, developing effective and reliable means of preparing nanostructures from a wide variety of piezomaterials is essential for the a

Biomedical EngineeringEngineering
2
Article|302 citations·2019
2D Metal Zn Nanostructure Electrodes for High‐Performance Zn Ion Supercapacitors
Geon‐Hyoung An, John Hong, Sangyeon Pak, Yuljae Cho, Sanghyo Lee, Bo Hou, SeungNam Cha
SJR Q1Advanced Energy Materials

Abstract Recent supercapacitors show a high power density with long‐term cycle life time in energy‐powering applications. A supercapacitor based on a single metal electrode accompanying multivalent cations, multiple charging/discharging kinetics, and high electrical conductivity is a promising energy‐storing system that replaces conventionally used oxide and sulfide materials. Here, a hierarchically nanostructured 2D‐Zn metal electrode‐ion supercapacitor (ZIC) is reported which significantly enh

Electronic, Optical and Magnetic MaterialsMaterials Science
3
Article|252 citations·2017
Monolayer optical memory cells based on artificial trap-mediated charge storage and release
Juwon Lee, Sangyeon Pak, Young‐Woo Lee, Yuljae Cho, John Hong, Paul Giraud, Hyeon Suk Shin, Stephen Morris, Jung Inn Sohn, SeungNam Cha, Jong Min Kim
SJR Q1Nature CommunicationsOA

Abstract Monolayer transition metal dichalcogenides are considered to be promising candidates for flexible and transparent optoelectronics applications due to their direct bandgap and strong light-matter interactions. Although several monolayer-based photodetectors have been demonstrated, single-layered optical memory devices suitable for high-quality image sensing have received little attention. Here we report a concept for monolayer MoS 2 optoelectronic memory devices using artificially-struct

Materials ChemistryMaterials Science
4
Article|232 citations·2017
Strain-Mediated Interlayer Coupling Effects on the Excitonic Behaviors in an Epitaxially Grown MoS2/WS2 van der Waals Heterobilayer
Sangyeon Pak, Juwon Lee, Young‐Woo Lee, A‐Rang Jang, Seongjoon Ahn, Kyung Yeol, Yuljae Cho, John Hong, Sanghyo Lee, Hu Young Jeong, Hyunsik Im, Hyeon Suk Shin
SJR Q1Nano LettersOA

in our heterobilayer increases monotonically with tensile strain and decreases with compressive strain. We attribute the strain-dependent emission behavior of the heterobilayer to the modulation of the band structure for each monolayer, which is dictated by the alterations in the band gap transitions. These findings present an important pathway toward designing heterostructures and flexible devices.

Materials ChemistryMaterials Science
5
Article|135 citations·2017
Thermodynamically Stable Synthesis of Large‐Scale and Highly Crystalline Transition Metal Dichalcogenide Monolayers and their Unipolar n–n Heterojunction Devices
Juwon Lee, Sangyeon Pak, Paul Giraud, Young‐Woo Lee, Yuljae Cho, John Hong, A‐Rang Jang, Hee‐Suk Chung, Woong‐Ki Hong, Hu Young Jeong, Hyeon Suk Shin, Luigi G. Occhipinti
SJR Q1Advanced MaterialsOA

Transition metal dichalcogenide (TMDC) monolayers are considered to be potential materials for atomically thin electronics due to their unique electronic and optical properties. However, large‐area and uniform growth of TMDC monolayers with large grain sizes is still a considerable challenge. This report presents a simple but effective approach for large‐scale and highly crystalline molybdenum disulfide monolayers using a solution‐processed precursor deposition. The low supersaturation level, tr

Materials ChemistryMaterials Science
6
Article|114 citations·2016
Highly Monodispersed PbS Quantum Dots for Outstanding Cascaded-Junction Solar Cells
Bo Hou, Yuljae Cho, Byung Sung Kim, John Hong, Jong Bae Park, Se Jin Ahn, Jung Inn Sohn, SeungNam Cha, Jong Min Kim
SJR Q1ACS Energy LettersOA

High Resolution Image Download MS PowerPoint Slide High-performance cascaded-junction quantum dot solar cells (CJQDSCs) are fabricated from as-prepared highly monodispersed lead sulfide QDs. The cells have a high power conversion of 9.05% and a short-circuit current density of 32.51 mA cm –2 . A reliable and effective stratagem for fabricating high-quality lead sulfide quantum dots (QD) is explored through a “monomer” concentration-controlled experiment. Robust QDSC performances with different b

Materials ChemistryMaterials Science
7
Article|98 citations·2020
Hybrid Smart Fiber with Spontaneous Self‐Charging Mechanism for Sustainable Wearable Electronics
Yuljae Cho, Sangyeon Pak, Young‐Geun Lee, Jae Seok Hwang, Paul Giraud, Geon‐Hyoung An, SeungNam Cha
SJR Q1Advanced Functional Materials

Abstract Smart wearable electronics that are fabricated on light‐weight fabrics or flexible substrates are considered to be of next‐generation and portable electronic device systems. Ideal wearable and portable applications not only require the device to be integrated into various fiber form factors, but also desire self‐powered system in such a way that the devices can be continuously supplied with power as well as simultaneously save the acquired energy for their portability and sustainability

Biomedical EngineeringEngineering
8
Article|93 citations·2020
Strain‐Engineering of Contact Energy Barriers and Photoresponse Behaviors in Monolayer MoS2 Flexible Devices
Sangyeon Pak, Juwon Lee, A‐Rang Jang, Seungje Kim, Kyung‐Ho Park, Jung Inn Sohn, SeungNam Cha
SJR Q1Advanced Functional Materials

Abstract Flexible electronics and optoelectronics based on monolayered, semiconducting transition metal dichalcogenides (TMDCs) channel have recently received attention as the 2D structure possess superior mechanical, optical, and electrical properties. However, there is a lack of understanding of strain‐dependent electrical and photoelectrical properties in the electrode‐TMDC channel system. Here, two‐terminal flexible device is fabricated and strain‐engineered contact barrier modulation betwee

Materials ChemistryMaterials Science
9
Article|89 citations·2011
p‐Type Conduction Characteristics of Lithium‐Doped ZnO Nanowires
JunSeok Lee, SeungNam Cha, Jongmin Kim, HyeWon Nam, SangHyo Lee, WonBae Ko, Kang L. Wang, Jea-gun Park, Jin Pyo Hong
SJR Q1Advanced Materials

p-type ZnO nanowires (NWs) based on a simple hydrothermal technique with a lithium dopant are demonstrated. It is demonstrated that Li substitution of Zn occurrs because of thermally induced migration due to post-annealing in the presence of oxygen. The stable formation of p-type ZnO:Li NWs is revealed using a NW field-effect transistor and a simple n-type ZnO thin film/p-type annealed ZnO:Li NW homojunction diode. Detailed facts of importance to specialist readers are published as ”Supporting I

Materials ChemistryMaterials Science
10
Article|87 citations·2012
Enhancement of piezoelectricity via electrostatic effects on a textile platform
Hyunjin Kim, Hyunjin Kim, Seong Min Kim, Hyungbin Son, Hyeok Kim, Hyeok Kim, Boongik Park, JiYeon Ku, Jung Inn Sohn, Kyuhyun Im, Jae Eun Jang, Jong‐Jin Park
SJR Q1Energy & Environmental Science

We have shown the enhanced piezoelectricity by electrostatic effects on a textile based platform. The electrostatic and piezoelectric effects were hybridized by integrating piezoelectric ZnO nanowires and a charged dielectric film on a wearable textile substrate. The hybrid textile nanogenerator produced an output voltage of 8 V and an output current of 2.5 μA. Using a simple AC–DC converter circuit, we operated the green organic light-emitting diode and a liquid crystal display panel using a 10

Biomedical EngineeringEngineering
11
Article|85 citations·2017
Hierarchically assembled tubular shell-core-shell heterostructure of hybrid transition metal chalcogenides for high-performance supercapacitors with ultrahigh cyclability
Young‐Woo Lee, Byung‐Sung Kim, John Hong, Heechae Choi, Hyun-Sik Jang, Bo Hou, Sangyeon Pak, Juwon Lee, Sanghyo Lee, Stephen Morris, Dongmok Whang, Jin Pyo Hong
SJR Q1Nano EnergyOA
Electronic, Optical and Magnetic MaterialsMaterials Science
12
Article|82 citations·2016
High Performance PbS Quantum Dot/Graphene Hybrid Solar Cell with Efficient Charge Extraction
Byung‐Sung Kim, Darren C. J. Neo, Bo Hou, Jong Bae Park, Yuljae Cho, Nanlin Zhang, John Hong, Sangyeon Pak, Sanghyo Lee, Jung Inn Sohn, Hazel E. Assender, Andrew A. R. Watt
SJR Q1ACS Applied Materials & InterfacesOA

Hybrid colloidal quantum dot (CQD) solar cells are fabricated from multilayer stacks of lead sulfide (PbS) CQD and single layer graphene (SG). The inclusion of graphene interlayers is shown to increase power conversion efficiency by 9.18%. It is shown that the inclusion of conductive graphene enhances charge extraction in devices. Photoluminescence shows that graphene quenches emission from the quantum dot suggesting spontaneous charge transfer to graphene. CQD photodetectors exhibit increased p

Materials ChemistryMaterials Science
13
Article|82 citations·2018
Consecutive Junction-Induced Efficient Charge Separation Mechanisms for High-Performance MoS2/Quantum Dot Phototransistors
Sangyeon Pak, Yuljae Cho, John Hong, Juwon Lee, Sanghyo Lee, Bo Hou, Geon‐Hyoung An, Young‐Woo Lee, Jae Eun Jang, Hyunsik Im, Stephen Morris, Jung Inn Sohn
SJR Q1ACS Applied Materials & InterfacesOA

jones. This work demonstrates an important pathway toward designing hybrid phototransistors and mixed-dimensional van der Waals heterostructures.

Materials ChemistryMaterials Science
14
Article|74 citations·2015
Enhanced energy harvesting based on surface morphology engineering of P(VDF-TrFE) film
Yuljae Cho, Jong Bae Park, Byung‐Sung Kim, Juwon Lee, Woong‐Ki Hong, Il‐Kyu Park, Jae Eun Jang, Jung Inn Sohn, SeungNam Cha, Jong Min Kim
SJR Q1Nano Energy
Biomedical EngineeringEngineering
15
Article|69 citations·2019
Direct Epitaxial Synthesis of Selective Two-Dimensional Lateral Heterostructures
Juwon Lee, Sangyeon Pak, Young‐Woo Lee, Young S. Park, A‐Rang Jang, John Hong, Yuljae Cho, Bo Hou, Sanghyo Lee, Hu Young Jeong, Hyeon Suk Shin, Stephen Morris
SJR Q1ACS Nano

Two-dimensional (2D) heterostructured or alloyed monolayers composed of transition metal dichalcogenides (TMDCs) have recently emerged as promising materials with great potential for atomically thin electronic applications. However, fabrication of such artificial TMDC heterostructures with a sharp interface and a large crystal size still remains a challenge because of the difficulty in controlling various growth parameters simultaneously during the growth process. Here, a facile synthetic protoc

Materials ChemistryMaterials Science

Research Areas

Materials ChemistryElectrical and Electronic EngineeringElectronic, Optical and Magnetic MaterialsBiomedical EngineeringRenewable Energy, Sustainability and the EnvironmentPolymers and Plastics

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