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Jung‐Wuk Hong

Korea Advanced Institute of Science and Technology · 工学

研究室紹介

Professor Jung-Wuk Hong's research lab specializes in the design and development of advanced functional nanomaterials and hybrid composites for next-generation optoelectronic, protective, and sensing applications. The lab focuses on creating 3D-structured nanocomposites with enhanced mechanical, optical, and sensing properties through innovative nanoarchitectural engineering, such as continuous inorganic nanoshells and periodic porous frameworks. Key research directions include mechano-responsive smart windows, high-performance flexible protective coatings, and highly sensitive gas sensors for indoor air quality monitoring.

3D nanocompositesmechano-responsive materialsnanoporous oxidesflexible optoelectronicsperidynamic simulation

Research Overview

Papers
172
Total Citations
2,602
Papers (5y)
41
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
41total
2022
2023
2024
2025
2026
Citations per year (5y)
220total
20222023202420252026

Selected Papers

15
1
Article|225 citations·2012
A coupling approach of discretized peridynamics with finite element method
Wenyang Liu, Jung‐Wuk Hong
SJR Q1Computer Methods in Applied Mechanics and Engineering
Mechanics of MaterialsEngineering
2
Article|121 citations·2015
Fracturing patterns of rock-like materials in compression captured with peridynamics
Youn Doh Ha, Jooeun Lee, Jung‐Wuk Hong
SJR Q1Engineering Fracture Mechanics
Mechanics of MaterialsEngineering
3
Article|86 citations·2020
Impact resistance of nacre-like composites diversely patterned by 3D printing
Kwonhwan Ko, Suyeong Jin, Sang Eon Lee, Jung‐Wuk Hong
SJR Q1Composite Structures
BiomaterialsMaterials Science
4
Article|85 citations·2019
Bio-inspired bimaterial composites patterned using three-dimensional printing
Kwonhwan Ko, Suyeong Jin, Sang Eon Lee, Ikjin Lee, Jung‐Wuk Hong
SJR Q1Composites Part B Engineering
BiomaterialsMaterials Science
5
Article|82 citations·2015
Impact fracture analysis enhanced by contact of peridynamic and finite element formulations
Jooeun Lee, Wenyang Liu, Jung‐Wuk Hong
SJR Q1International Journal of Impact Engineering
Mechanics of MaterialsEngineering
6
Article|64 citations·2018
Multifunctional Polymer Nanocomposites Reinforced by 3D Continuous Ceramic Nanofillers
Changui Ahn, Sang‐Min Kim, Jae‐Wook Jung, Junyong Park, Taegeon Kim, Sang Eon Lee, Dongchan Jang, Jung‐Wuk Hong, Seung Min Han, Seokwoo Jeon
SJR Q1ACS Nano

Polymer nanocomposites with inclusion of ceramic nanofillers have relatively high yield strength, elastic moduli, and toughness that therefore are widely used as functional coating and films for optoelectronic applications. Although the mechanical properties are enhanced with increasing the fraction of nanofiller inclusion, there generally is an upper limit on the amount of nanofiller inclusion because the aggregation of the fillers in the polymer matrix, which typically occurs, degrades the mec

Ceramics and CompositesMaterials Science
7
Article|64 citations·2011
Discretized peridynamics for brittle and ductile solids
Wenyang Liu, Jung‐Wuk Hong
SJR Q1International Journal for Numerical Methods in Engineering

SUMMARY Peridynamics is a theory of continuum mechanics expressed in forms of integral equations rather than partial differential equations. In this paper, a peridynamics code is implemented using a graphics processing unit for highly parallel computation, and numerical studies are conducted to investigate the responses of brittle and ductile material models. Stress–strain behavior with different grid sizes and horizons is studied for a brittle material model. A comparison of stresses and strain

Mechanics of MaterialsEngineering
8
Article|62 citations·2017
The mechanism of fracture coalescence in pre-cracked rock-type material with three flaws
Jooeun Lee, Jung‐Wuk Hong, Jae‐Wook Jung
SJR Q1Engineering Geology
Mechanics of MaterialsEngineering
9
Article|61 citations·2016
Crack coalescence morphology in rock-like material under compression
Jooeun Lee, Youn Doh Ha, Jung‐Wuk Hong
SJR Q1International Journal of Fracture
Mechanics of MaterialsEngineering
10
Article|54 citations·2016
Parallel programming of a peridynamics code coupled with finite element method
Jooeun Lee, Seong Eun Oh, Jung‐Wuk Hong
SJR Q1International Journal of Fracture
Mechanics of MaterialsEngineering
11
Article|52 citations·2020
High‐Contrast Optical Modulation from Strain‐Induced Nanogaps at 3D Heterogeneous Interfaces
Donghwi Cho, Young‐Seok Shim, Jae‐Wook Jung, Sang‐Hyeon Nam, Seokhwan Min, Sang‐Eon Lee, Youngjin Ham, Kwangjae Lee, Junyong Park, Jonghwa Shin, Jung‐Wuk Hong, Seokwoo Jeon
SJR Q1Advanced ScienceOA

Abstract The realization of high‐contrast modulation in optically transparent media is of great significance for emerging mechano‐responsive smart windows. However, no study has provided fundamental strategies for maximizing light scattering during mechanical deformations. Here, a new type of 3D nanocomposite film consisting of an ultrathin (≈60 nm) Al 2 O 3 nanoshell inserted between the elastomers in a periodic 3D nanonetwork is proposed. Regardless of the stretching direction, numerous light‐

Biomedical EngineeringEngineering
12
Article|44 citations·2021
Flexible Protective Film: Ultrahard, Yet Flexible Hybrid Nanocomposite Reinforced by 3D Inorganic Nanoshell Structures
Gwangmin Bae, Gwang‐Mun Choi, Changui Ahn, Sang‐Min Kim, Wonsik Kim, Youngjun Choi, Dawon Park, Dongchan Jang, Jung‐Wuk Hong, Seung Min Han, Byeong‐Soo Bae, Seokwoo Jeon
SJR Q1Advanced Functional Materials

Abstract Emerging flexible optoelectronics requires a new type of protective material that is not only hard but also flexible. Organic–inorganic (O–I) hybrid materials have been used as a flexible cover window to increase wear resistance and polymer‐like flexibility. However, the hardness of O–I hybrid materials is much lower than that of metals and ceramics due to the low intrinsic hardness of the organic matrix and limited volume fraction of inorganic reinforcement. Herein, a new type of hybri

Ceramics and CompositesMaterials Science
13
Article|42 citations·2013
Analysis of impact of large commercial aircraft on a prestressed containment building
Kyoungsoo Lee, Sang Eul Han, Jung‐Wuk Hong
SJR Q1Nuclear Engineering and Design
Materials ChemistryMaterials Science
14
Article|39 citations·2021
Rationally Designed TiO2 Nanostructures of Continuous Pore Network for Fast‐Responding and Highly Sensitive Acetone Sensor
Jun Min Suh, Donghwi Cho, Sangmin Lee, Tae Hyung Lee, Jae‐Wook Jung, Jin‐Ho Lee, Sung Hwan Cho, Tae Hoon Eom, Jung‐Wuk Hong, Young‐Seok Shim, Seokwoo Jeon, Ho Won Jang
SJR Q1Small Methods

Abstract For the last several years, indoor air quality monitoring has been a significant issue due to the increasing time portion of indoor human activities. Especially, the early detection of volatile organic compounds potentially harmful to the human body by the prolonged exposure is the primary concern for public human health, and such technology is imperatively desired. In this study, highly porous and periodic 3D TiO 2 nanostructures are designed and studied for this concern. Specifically,

Electrical and Electronic EngineeringEngineering
15
Article|34 citations·2018
Finite element analysis for the evaluation of the low-velocity impact response of a composite plate
Furqan Ahmad, Fethi Abbassi, Myung Kyun Park, Jae‐Wook Jung, Jung‐Wuk Hong
SJR Q2Advanced Composite Materials

The low-velocity impact responses of cross-ply CFRP composite plates are investigated experimentally and are simulated using the finite element code LS-DYNA. An experimental test was initially performed and two different modeling approaches were then employed to model the composite plates. In the first numerical modeling approach, solid elements are utilized for the composite layers, whereas in the second, shell elements are used. The numerical model using the shell elements shows a good correla

Mechanics of MaterialsEngineering

Research Areas

Mechanics of MaterialsCivil and Structural EngineeringComputational MechanicsElectrical and Electronic EngineeringMaterials ChemistryBiomaterials

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