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Sung Youb Kim

Ulsan National Institute of Science and Technology · 材料科学

研究室紹介

Professor Sung Youb Kim's research lab specializes in advanced materials design for sustainable energy technologies, with a primary focus on next-generation energy storage systems and thermoelectric applications. The lab develops innovative nanostructured materials—particularly silicon-based anodes and PbTe-based thermoelectric materials—through novel synthesis and engineering strategies such as void engineering, lamellar nanostructuring, and 3D printing. Key research directions include stress management in high-capacity battery anodes, auxetic behavior in 2D materials, and scalable fabrication of high-performance, commercially viable energy materials. The lab emphasizes practical feasibility by addressing challenges such as volume expansion, electrode density, and system integration.

energy storagethermoelectric materialssilicon anodesnanostructured materialsadditive manufacturing

Research Overview

Papers
141
Total Citations
5,256
Papers (5y)
26
Primary Field
材料科学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
26total
2022
2023
2024
2025
2026
Citations per year (5y)
124total
20222023202420252026

Selected Papers

15
1
Article|133 citations·2014
Negative Poisson’s ratios in metal nanoplates
Duc Tam Ho, Soon‐Dong Park, Soon‐Yong Kwon, Kibog Park, Sung Youb Kim
SJR Q1Nature CommunicationsOA
Materials ChemistryMaterials Science
2
Article|77 citations·2019
Fabrication of Lamellar Nanosphere Structure for Effective Stress‐Management in Large‐Volume‐Variation Anodes of High‐Energy Lithium‐Ion Batteries
Jaekyung Sung, Jiyoung Ma, Seong‐Hyeon Choi, Jaehyung Hong, Namhyung Kim, Sujong Chae, Yeonguk Son, Sung Youb Kim, Jaephil Cho
SJR Q1Advanced Materials

Abstract The use of high‐capacity anode materials to overcome the energy density limits imposed by the utilization of low‐theoretical‐capacity conventional graphite has recently drawn increased attention. Until now, stress management (including strategies relying on size, surface coating, and free volume control) has been achieved by addressing the critical problems originating from significant anode volume expansion upon lithiation. However, commercially viable alternatives to graphite have not

Electrical and Electronic EngineeringEngineering
3
Article|66 citations·2020
Stress Relief Principle of Micron‐Sized Anodes with Large Volume Variation for Practical High‐Energy Lithium‐Ion Batteries
Yoon‐Kwang Lee, Taeyong Lee, Jaehyung Hong, Jaekyung Sung, Namhyung Kim, Yeonguk Son, Jiyoung Ma, Sung Youb Kim, Jaephil Cho
SJR Q1Advanced Functional Materials

Abstract Practical applications of high gravimetric and volumetric capacity anodes for next‐generation lithium‐ion batteries have attracted unprecedented attentions, but still faced challenges by their severe volume changes, rendering low Coulombic efficiency and fast capacity fading. Nano and void‐engineering strategies had been extensively applied to overcome the large volume fluctuations causing the continuous irreversible reactions upon cycling, but they showed intrinsic limit in fabrication

Electrical and Electronic EngineeringEngineering
4
Article|66 citations·2007
Transition-pathway models of atomic diffusion on fcc metal surfaces. I. Flat surfaces
Sung Youb Kim, In‐Ho Lee, Sukky Jun
SJR Q1Physical Review B

Numerical calculation of minimum-energy paths and activation energy barriers for various atomic diffusion processes on fcc metal surfaces are presented. The computational method employed is the action-derived molecular dynamics that searches the approximate Newtonian trajectory on potential-energy surfaces. The minimization of a modified action, which facilitates the conservation of total energy and the control of kinetic energy, enables us to find efficiently the minimum-energy paths of complex

Biomedical EngineeringEngineering
5
Article|65 citations·2021
Doping‐Induced Viscoelasticity in PbTe Thermoelectric Inks for 3D Printing of Power‐Generating Tubes
Jungsoo Lee, Seungjun Choo, Hyejin Ju, Jaehyung Hong, Seong Eun Yang, Fredrick Kim, Da Hwi Gu, Jeongin Jang, Gyeonghun Kim, Sangjoon Ahn, Ji Eun Lee, Sung Youb Kim
SJR Q1Advanced Energy Materials

Abstract Thermoelectric (TE) technologies offer promising means to enhance fossil energy efficiencies by generating electricity from waste heat from industrial or automobile exhaust gases. For these applications, thermoelectric modules should be designed from the perspective of system integration for efficient heat transfer, system simplification, and low processing cost. However, typical thermoelectric modules manufactured by traditional processes do not fulfil such requirements, especially for

Materials ChemistryMaterials Science
6
Article|62 citations·2016
Negative Poisson's ratio in periodic porous graphene structures
Viet Hung Ho, Duc Tam Ho, Soon‐Yong Kwon, Sung Youb Kim
SJR Q3physica status solidi (b)

We conducted molecular statics simulations to investigate the negative Poisson's ratio (auxetic behavior) of periodic porous graphene structures based on the rotating rigid unit mechanism. To obtain a negative Poisson's ratio, simple voids were periodically introduced into graphene. We showed that the Poisson's ratio of the designed graphene structure is strongly dependent on the aspect ratio of the voids, and it can approach the theoretical limit of −1.0. More importantly, the graphene periodic

Mechanical EngineeringEngineering
7
Article|59 citations·2020
Scalable Synthesis of Hollow β-SiC/Si Anodes via Selective Thermal Oxidation for Lithium-Ion Batteries
Seung-Kyu Park, Jaekyung Sung, Sujong Chae, Jaehyung Hong, Tae Yong Lee, Yoon‐Kwang Lee, Hyungyeon Cha, Sung Youb Kim, Jaephil Cho
SJR Q1ACS Nano

Silicon for anodes in lithium-ion batteries has received much attention owing to its superior specific capacity. There has been a rapid increase of research related to void engineering to address the silicon failure mechanism stemming from the massive volume change during (dis)charging in the past decade. Nevertheless, conventional synthetic methods require complex synthetic procedures and toxic reagents to form a void space, so they have an obvious limitation to reach practical application. Her

Electrical and Electronic EngineeringEngineering
8
Article|57 citations·2007
Transition-pathway models of atomic diffusion on fcc metal surfaces. II. Stepped surfaces
Sung Youb Kim, In‐Ho Lee, Sukky Jun
SJR Q1Physical Review B

Action-derived molecular dynamics was demonstrated in the companion paper (Paper I) to be effective for the analysis of atomic surface diffusion. The method is here applied to the search of minimum-energy paths and the calculation of activation energy barriers in more complex single-adatom diffusion processes on fcc metal surfaces containing steps. Diverse diffusion routes are investigated along and across one- or two-layer steps on different surface orientations. Fundamental diffusion mechanism

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
9
Article|55 citations·2009
Multilayer friction and attachment effects on energy dissipation in graphene nanoresonators
Sung Youb Kim, Harold S. Park
SJR Q1Applied Physics Letters

We utilize classical molecular dynamics to study the effects of intrinsic, interlayer friction between graphene monolayers, as well as extrinsic attachment or clamping strength between graphene and a model silicon substrate on the energy dissipation (Q-factors) of oscillating graphene nanoresonators. Both interlayer friction and attachment effects are found to significantly degrade the graphene Q-factors, with an increase in energy dissipation with increasing temperature, while both effects are

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
10
Article|47 citations·2014
Origin of Poor Cyclability in Li2MnSiO4 from First-Principles Calculations: Layer Exfoliation and Unstable Cycled Structure
Hosik Lee, Soon‐Dong Park, Janghyuk Moon, Hoonkyung Lee, Kyeongjae Cho, Maenghyo Cho, Sung Youb Kim
SJR Q1Chemistry of Materials

Good cyclability is essential for the potential application of cathode materials. Here, we investigate the structural stability of two-dimensional (2D) Li-layered and three-dimensional (3D) structured polymorphs of Li 2 FeSiO 4 and Li 2 MnSiO 4 using the density functional theory calculations. We find that all 2D Li-layered polymorphs of both materials are unstable upon full delithiation owing to layer exfoliation, which can lead to an amorphous structure. However, in contrast to the fact that t

Electrical and Electronic EngineeringEngineering
11
Article|46 citations·2008
Utilizing Mechanical Strain to Mitigate the Intrinsic Loss Mechanisms in Oscillating Metal Nanowires
Sung Youb Kim, Harold S. Park
SJR Q1Physical Review Letters

We utilize classical molecular dynamics to study energy dissipation (the Q factors) of doubly clamped copper nanowire nanoresonators undergoing flexural oscillations. We find that the application of tensile strain effectively mitigates both the intrinsic surface and thermal losses, with improvements in Q by a factor of 3-10 across a range of operating temperatures. We also find that the nanowire Q factors are not dependent on the surface area to volume ratio, but instead their aspect ratio, and

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
12
Article|44 citations·2016
Negative Poisson's ratio in cubic materials along principal directions
Duc Tam Ho, Soon‐Dong Park, Soon‐Yong Kwon, Tong‐Seok Han, Sung Youb Kim
SJR Q3physica status solidi (b)

This report employed molecular statics simulation and density‐functional‐theory calculation to study the Poisson's ratios of face‐centered‐cubic materials. We provide numerical and theoretical evidences to show that cubic materials can exhibit auxetic behavior in a principal direction under proper loading conditions. When a stress perpendicular to the loading direction is applied, cubic materials can exhibit a negative Poisson's ratio at finite strain. The negative Poisson's ratio behavior, incl

Mechanical EngineeringEngineering
13
Article|41 citations·2015
Auxeticity of face‐centered cubic metal (001) nanoplates
Duc Tam Ho, Hokun Kim, Soon‐Yong Kwon, Sung Youb Kim
SJR Q3physica status solidi (b)

We present the results of an atomistic study on the Poisson's ratios of face‐centered cubic metal (001) nanoplates under tensile loading. Here, we find that the behavior of the Poisson's ratios of metal nanoplates is strongly dependent on the characteristics of a phase transformation that takes place in their bulk counterparts as well as on the amount of compressive stress induced in the nanoplates. In addition, we discuss the effects of the nanoplate thickness and temperature on the mechanical

Mechanical EngineeringEngineering
14
Article|37 citations·2010
On the utility of vacancies and tensile strain-induced quality factor enhancement for mass sensing using graphene monolayers
Sung Youb Kim, Harold S. Park
SJR Q2Nanotechnology

We have utilized classical molecular dynamics to investigate the mass sensing potential of graphene monolayers, using gold as the model adsorbed atom. In doing so, we report two key findings. First, we find that while perfect graphene monolayers are effective mass sensors at very low (T < 10 K) temperatures, their mass sensing capability is lost at higher temperatures due to diffusion of the adsorbed atom at elevated temperatures. We demonstrate that even if the quality (Q) factors are significa

Materials ChemistryMaterials Science
15
Article|30 citations·2018
Auxeticity in Metals and Periodic Metallic Porous Structures Induced by Elastic Instabilities
Duc Tam Ho, Cao Thang Nguyen, Soon‐Yong Kwon, Sung Youb Kim
SJR Q3physica status solidi (b)

Materials with a negative Poisson's ratio (auxetics) are counter intuitive because their mechanical response is unusual. On the other hand, instabilities are usually regarded as deleterious phenomena and thus their prevention is needed. Here, numerical and theoretical evidences have been provided to show that two different elastic instabilities are, rather than deleterious, useful phenomena that cause auxeticity. It has been shown that a negative Poisson's ratio can be found in some face‐centere

Mechanical EngineeringEngineering

Research Areas

Materials ChemistryMechanical EngineeringElectrical and Electronic EngineeringMechanics of MaterialsBiomedical EngineeringAtomic and Molecular Physics, and Optics

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