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Sukwoo Jeon

Korea University · 工学

研究室紹介

Professor Sukwoo Jeon's research lab specializes in the design, synthesis, and application of advanced two-dimensional nanomaterials and hybrid nanocomposites for next-generation energy and electronic devices. Key research directions include the scalable fabrication of graphene quantum dots, hexagonal boron nitride nanoplatelets, and conductive elastomeric composites with hierarchical nanostructures. The lab focuses on enhancing electrical, thermal, and mechanical properties through innovative functionalization and hybridization strategies, particularly for applications in flexible electronics, energy storage (e.g., Li-O2 batteries), and optoelectronics.

2D nanomaterialsnanocompositesenergy storagenanofabricationelectrospun nanofibers

Research Overview

Papers
294
Total Citations
19,704
Papers (5y)
59
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
59total
2022
2023
2024
2025
2026
Citations per year (5y)
1,056total
20222023202420252026

Selected Papers

15
1
Article|855 citations·2012
Tuning the Photoluminescence of Graphene Quantum Dots through the Charge Transfer Effect of Functional Groups
Sunghwan Jin, Dahye Kim, Gwang Hoon Jun, Soon Hyung Hong, Seokwoo Jeon
SJR Q1ACS Nano

The band gap properties of graphene quantum dots (GQDs) arise from quantum confinement effects and differ from those in semimetallic graphene sheets. Tailoring the size of the band gap and understanding the band gap tuning mechanism are essential for the applications of GQDs in opto-electronics. In this study, we observe that the photoluminescence (PL) of the GQDs shifts due to charge transfers between functional groups and GQDs. GQDs that are functionalized with amine groups and are 1-3 layers

Materials ChemistryMaterials Science
2
Article|661 citations·2012
Enhanced Thermal Conductivity of Epoxy–Graphene Composites by Using Non‐Oxidized Graphene Flakes with Non‐Covalent Functionalization
Sung Ho Song, Kwang Hyun Park, Bo‐Hyun Kim, Yong Won Choi, Gwang Hoon Jun, Dong Ju Lee, Byung‐Seon Kong, Kyung‐Wook Paik, Seokwoo Jeon
SJR Q1Advanced Materials

Homogeneous distribution of graphene flakes in a polymer matrix, still preserving intrinsic material properties, is key to successful composite applications. A novel approach is presented to disperse non-oxidized graphene flakes with non-covalent functionalization of 1-pyrenebutyric acid and to fabricate nanocomposites with outstanding thermal conductivity (∼1.53 W/mK) and mechanical properties (∼1.03 GPa).

Materials ChemistryMaterials Science
3
Article|629 citations·2015
Scalable Exfoliation Process for Highly Soluble Boron Nitride Nanoplatelets by Hydroxide-Assisted Ball Milling
Dongju Lee, Bin Lee, Kwang Hyun Park, Ho Jin Ryu, Seokwoo Jeon, Soon Hyung Hong
SJR Q1Nano Letters

The scalable preparation of two-dimensional hexagonal boron nitride (h-BN) is essential for practical applications. Despite intense research in this area, high-yield production of two-dimensional h-BN with large-size and high solubility remains a key challenge. In the present work, we propose a scalable exfoliation process for hydroxyl-functionalized BN nanoplatelets (OH-BNNPs) by a simple ball milling of BN powders in the presence of sodium hydroxide via the synergetic effect of chemical peelin

Materials ChemistryMaterials Science
4
Article|464 citations·2016
Bioinspired, Highly Stretchable, and Conductive Dry Adhesives Based on 1D–2D Hybrid Carbon Nanocomposites for All-in-One ECG Electrodes
Taehoon Kim, Junyong Park, Jongmoo Sohn, Donghwi Cho, Seokwoo Jeon
SJR Q1ACS Nano

Here we propose a concept of conductive dry adhesives (CDA) combining a gecko-inspired hierarchical structure and an elastomeric carbon nanocomposite. To complement the poor electrical percolation of 1D carbon nanotube (CNT) networks in an elastomeric matrix at a low filler content (∼1 wt %), a higher dimensional carbon material (i.e., carbon black, nanographite, and graphene nanopowder) is added into the mixture as an aid filler. The co-doped graphene and CNT in the composite show the lowest vo

Biomedical EngineeringEngineering
5
Article|341 citations·2013
Bifunctional Composite Catalysts Using Co3O4 Nanofibers Immobilized on Nonoxidized Graphene Nanoflakes for High-Capacity and Long-Cycle Li–O2 Batteries
Won‐Hee Ryu, Taek-Han Yoon, Sung Ho Song, Seokwoo Jeon, Yong-Joon Park, Il‐Doo Kim
SJR Q1Nano Letters

Designing a highly efficient catalyst is essential to improve the electrochemical performance of Li-O2 batteries for long-term cycling. Furthermore, these batteries often show significant capacity fading due to the irreversible reaction characteristics of the Li2O2 product. To overcome these limitations, we propose a bifunctional composite catalyst composed of electrospun one-dimensional (1D) Co3O4 nanofibers (NFs) immobilized on both sides of the 2D nonoxidized graphene nanoflakes (GNFs) for an

Electrical and Electronic EngineeringEngineering
6
Article|333 citations·2012
Three-dimensional nanonetworks for giant stretchability in dielectrics and conductors
Junyong Park, Shuodao Wang, Ming Li, Changui Ahn, Jerome K. Hyun, Dong Seok Kim, Do Kyung Kim, John A. Rogers, Yonggang Huang, Seokwoo Jeon
SJR Q1Nature CommunicationsOA
Biomedical EngineeringEngineering
7
Article|303 citations·2004
Fabricating complex three-dimensional nanostructures with high-resolution conformable phase masks
Seokwoo Jeon, Jang‐Ung Park, R. Cirelli, Shu Yang, Carla E. Heitzman, Paul V. Braun, Paul J. A. Kenis, John A. Rogers
SJR Q1Proceedings of the National Academy of SciencesOA

High-resolution, conformable phase masks provide a means to fabricate, in an experimentally simple manner, classes of 3D nanostructures that are technologically important but difficult to generate in other ways. In this approach, light passing through a phase mask that has features of relief comparable in dimension to the wavelength generates a 3D distribution of intensity that exposes a photopolymer film throughout its thickness. Developing this polymer yields a structure in the geometry of the

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
8
Article|293 citations·2020
High-performance gas sensor array for indoor air quality monitoring: the role of Au nanoparticles on WO3, SnO2, and NiO-based gas sensors
Jinho Lee, Youngmo Jung, Seung-Hyun Sung, Gilho Lee, Jungmo Kim, Jin Sil Seong, Young-Seok Shim, Seong Chan Jun, Seokwoo Jeon
SJR Q1Journal of Materials Chemistry A

The 3 × 3 gas sensor array with different metal oxides and morphologies is fabricated to compare the sensitization effects of Au nanoparticles on various metal oxides and gases.The 3 × 3 gas sensor array with different metal oxides and morphologies is fabricated to compare the sensitization effects of Au nanoparticles on various metal oxides and gases.

Electrical and Electronic EngineeringEngineering
9
Article|267 citations·2014
Highly Efficient Light‐Emitting Diode of Graphene Quantum Dots Fabricated from Graphite Intercalation Compounds
Sung Ho Song, Min‐Ho Jang, Jin Woong Chung, Sung Hawn Jin, Bo‐Hyun Kim, Seung Hyun Hur, Seunghyup Yoo, Yong‐Hoon Cho, Seokwoo Jeon
SJR Q1Advanced Optical Materials

Graphene quantum dot (GQD) light-emitting diodes (GQD-LEDs) are shown to have an electroluminescence exceeding 1000 cd m-2. These devices are possible due to a novel synthesis method to create GQDs with minimal oxidation, guaranteeing high quantum yields via the solvothermal formation of graphite intercalation compounds between graphite powder and sodium potassium tartrate. The GQDs are incorporated into polymeric host layers in a multilayer device and irradiate blue (~400 nm) emission. With str

Materials ChemistryMaterials Science
10
Article|227 citations·2013
Enhanced Mechanical Properties of Epoxy Nanocomposites by Mixing Noncovalently Functionalized Boron Nitride Nanoflakes
Dongju Lee, Sung Ho Song, Jaewon Hwang, Sunghwan Jin, Kwang Hyun Park, Bo Hyun Kim, Soon Hyung Hong, Seokwoo Jeon
SJR Q1Small

The influence of surface modifications on the mechanical properties of epoxy-hexagonal boron nitride nanoflake (BNNF) nanocomposites is investigated. Homogeneous distributions of boron nitride nanoflakes in a polymer matrix, preserving intrinsic material properties of boron nitride nanoflakes, is the key to successful composite applications. Here, a method is suggested to obtain noncovalently functionalized BNNFs with 1-pyrenebutyric acid (PBA) molecules and to synthesize epoxy-BNNF nanocomposit

Materials ChemistryMaterials Science
11
Article|218 citations·2018
Two-Dimensional WO3 Nanosheets Chemically Converted from Layered WS2 for High-Performance Electrochromic Devices
Ashraful Azam, Jungmo Kim, Junyong Park, Travis G. Novak, Anand P. Tiwari, Sung Ho Song, Bumsoo Kim, Seokwoo Jeon
SJR Q1Nano Letters

Two-dimensional (2D) transitional metal oxides (TMOs) are an attractive class of materials due to the combined advantages of high active surface area, enhanced electrochemical properties, and stability. Among the 2D TMOs, 2D tungsten oxide (WO3) nanosheets possess great potential in electrochemical applications, particularly in electrochromic (EC) devices. However, feasible production of 2D WO3 nanosheets is challenging due to the innate 3D crystallographic structure of WO3. Here we report a nov

Polymers and PlasticsMaterials Science
12
Article|209 citations·2012
Uniform Graphene Quantum Dots Patterned from Self-Assembled Silica Nanodots
Jinsup Lee, Kyung-Ho Kim, Woon Ik Park, Bo‐Hyun Kim, Jong Hyun Park, Tae-Heon Kim, Sungyool Bong, Chulhong Kim, Geesung Chae, Myungchul Jun, Yong‐Kee Hwang, Yeon Sik Jung
SJR Q1Nano Letters

Graphene dots precisely controlled in size are interesting in nanoelectronics due to their quantum optical and electrical properties. However, most graphene quantum dot (GQD) research so far has been performed based on flake-type graphene reduced from graphene oxides. Consequently, it is extremely difficult to isolate the size effect of GQDs from the measured optical properties. Here, we report the size-controlled fabrication of uniform GQDs using self-assembled block copolymer (BCP) as an etch

Materials ChemistryMaterials Science
13
Article|179 citations·2003
Hydrothermal Synthesis of Er-Doped Luminescent TiO2 Nanoparticles
Seokwoo Jeon, Paul V. Braun
SJR Q1Chemistry of Materials

Here we report the synthesis and characterization of a stable suspension of fluorescent erbium-doped titania nanoparticles and their assembly into thin films and photonic crystals. The nanoparticles were synthesized through a sol−gel process followed by peptization with tetramethylammonium hydroxide and hydrothermal treatment. As expected, following the hydrothermal treatment, X-ray diffraction shows the particles to be exclusively anatase. The nanoparticles form a stable suspension in water and

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
14
Article|177 citations·2012
Exfoliation of Non-Oxidized Graphene Flakes for Scalable Conductive Film
Kwang Hyun Park, Bo‐Hyun Kim, Sung Ho Song, Jiyoung Kwon, Byung Seon Kong, Kisuk Kang, Seokwoo Jeon
SJR Q1Nano Letters

The increasing demand for graphene has required a new route for its mass production without causing extreme damages. Here we demonstrate a simple and cost-effective intercalation based exfoliation method for preparing high quality graphene flakes, which form a stable dispersion in organic solvents without any functionalization and surfactant. Successful intercalation of alkali metal between graphite interlayers through liquid-state diffusion from ternary KCl-NaCl-ZnCl(2) eutectic system is confi

Materials ChemistryMaterials Science
15
Article|176 citations·2020
Controllable Singlet–Triplet Energy Splitting of Graphene Quantum Dots through Oxidation: From Phosphorescence to TADF
Minsu Park, Hyung Suk Kim, Hyewon Yoon, Jin Kim, Sukki Lee, Seunghyup Yoo, Seokwoo Jeon
SJR Q1Advanced Materials

Abstract Long‐lived afterglow emissions, such as room‐temperature phosphorescence (RTP) and thermally activated delayed fluorescence (TADF), are beneficial in the fields of displays, bioimaging, and data security. However, it is challenging to realize a single material that simultaneously exhibits both RTP and TADF properties with their relative strengths varied in a controlled manner. Herein, a new design approach is reported to control singlet–triplet energy splitting (∆ E ST ) in graphene qua

Materials ChemistryMaterials Science

Research Areas

Materials ChemistryBiomedical EngineeringElectrical and Electronic EngineeringRenewable Energy, Sustainability and the EnvironmentAtomic and Molecular Physics, and OpticsElectronic, Optical and Magnetic Materials

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