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Yeong Jun Jung

Seoul National University · Materials Science

About the Lab

Professor Yeong Jun Jung's research lab specializes in computational materials science and molecular simulation, focusing on the fundamental properties and behaviors of advanced nanomaterials and electrochemical systems. Key research directions include understanding ion dynamics and charging mechanisms in supercapacitors using molecular dynamics simulations, exploring the unique electronic and structural properties of two-dimensional transition-metal dichalcogenides—particularly platinum diselenide (PtSe₂)—and developing machine learning models for predicting solvation free energies in diverse solvent environments. The lab integrates theoretical modeling, statistical mechanics, and data-driven approaches to address challenges in energy storage, 2D materials, and molecular solvation.

energy storage2D materialsmolecular dynamicssupercapacitorssolvation free energy

Research Overview

Papers
111
Total Citations
2,678
Papers (5y)
28
Primary Field
Materials Science

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
28total
2022
2023
2024
2025
2026
Citations per year (5y)
172total
20222023202420252026

Selected Papers

15
1
Article|233 citations·2004
Excitation lines and the breakdown of Stokes-Einstein relations in supercooled liquids
YounJoon Jung, Juan P. Garrahan, David Chandler
SJR Q2Physical Review EOA

By applying the concept of dynamical facilitation and analyzing the excitation lines that result from this facilitation, we investigate the origin of decoupling of transport coefficients in supercooled liquids. We illustrate our approach with two classes of models. One depicts diffusion in a strong glass former, and the other in a fragile glass former. At low temperatures, both models exhibit violation of the Stokes-Einstein relation, D approximately tau(-1), where D is the self-diffusion consta

Materials ChemistryMaterials Science
2
Article|135 citations·2011
Graphene-Based Supercapacitors: A Computer Simulation Study
Youngseon Shim, YounJoon Jung, Hyung J. Kim
SJR Q1The Journal of Physical Chemistry C

Energy density of supercapacitors based on a single-sheet graphene electrode is studied via molecular dynamics (MD) computer simulations. Two electrolytes of different types, pure 1-ethyl-3-methylimidazolium tetrafluoroborate (EMI + BF 4 – ) and an 1.1 M solution of EMI + BF 4 – in acetonitrile, are considered as a prototypical room-temperature ionic liquid (RTIL) and organic electrolyte, respectively. Structure of ions near the electrode surface varies significantly with its charge density, esp

Electronic, Optical and Magnetic MaterialsMaterials Science
3
Article|114 citations·2002
Lineshape theory and photon counting statistics for blinking quantum dots: a Lévy walk process
YounJoon Jung, Eli Barkai, R. Silbey
SJR Q2Chemical PhysicsOA
Statistical and Nonlinear PhysicsPhysics and Astronomy
4
Article|110 citations·2019
Horizontal-to-Vertical Transition of 2D Layer Orientation in Low-Temperature Chemical Vapor Deposition-Grown PtSe2 and Its Influences on Electrical Properties and Device Applications
Sang Sub Han, Jong Hun Kim, Chanwoo Noh, Jung Han Kim, Eunji Ji, Junyoung Kwon, Seung Min Yu, Tae‐Jun Ko, Emmanuel Okogbue, Kyu Hwan Oh, Hee‐Suk Chung, YounJoon Jung
SJR Q1ACS Applied Materials & Interfaces

Two-dimensional (2D) transition-metal dichalcogenides (2D TMDs) in the form of MX<sub>2</sub> (M: transition metal, X: chalcogen) exhibit intrinsically anisotropic layered crystallinity wherein their material properties are determined by constituting M and X elements. 2D platinum diselenide (2D PtSe<sub>2</sub>) is a relatively unexplored class of 2D TMDs with noble-metal Pt as M, offering distinct advantages over conventional 2D TMDs such as higher carrier mobility and lower growth temperatures

Materials ChemistryMaterials Science
5
Article|97 citations·2019
Understanding the charging dynamics of an ionic liquid electric double layer capacitor via molecular dynamics simulations
Chanwoo Noh, YounJoon Jung
SJR Q2Physical Chemistry Chemical Physics

We investigate the charging phenomena of an electric double layer capacitor (EDLC) by conducting both equilibrium and non-equilibrium molecular dynamics (MD) simulations. A graphene electrode and 1-ethyl-3-methylimidazolium thiocyanate ([EMIM]+[SCN]-) ionic liquid were used as a system for the EDLC. We clarify the ionic layer structure and show that an abrupt change of the ionic layers leads to a high differential capacitance of the EDLC. The charging simulations reveal that the charging dynamic

CatalysisChemical Engineering
6
Article|95 citations·2011
Graphene-based supercapacitors in the parallel-plate electrode configuration: Ionic liquidsversus organic electrolytes
Youngseon Shim, Hyung J. Kim, YounJoon Jung
SJR Q1Faraday Discussions

Supercapacitors with two single-sheet graphene electrodes in the parallel plate geometry are studied via molecular dynamics (MD) computer simulations. Pure 1-ethyl-3-methylimidazolium tetrafluoroborate (EMI+BF4-) and a 1.1 M solution of EMI+BF4- in acetonitrile are considered as prototypes of room-temperature ionic liquids (RTILs) and organic electrolytes. Electrolyte structure, charge density and associated electric potential are investigated by varying the charges and separation of the two ele

Electronic, Optical and Magnetic MaterialsMaterials Science
7
Article|87 citations·2019
Delfos: deep learning model for prediction of solvation free energies in generic organic solvents
Hyuntae Lim, YounJoon Jung
SJR Q1Chemical ScienceOA

word embedding and recurrent layers, augmented with the attention mechanism which extracts important substructures from outputs of recurrent neural networks. As a result, the predictor network calculates the solvation free energy of a given solvent-solute pair using features from encoders. With the results obtained from extensive calculations using 2495 solute-solvent pairs, we demonstrate that Delfos not only has great potential in showing accuracy comparable to that of the state-of-the-art com

Computational Theory and MathematicsComputer Science
8
Article|75 citations·2015
Slowing Down of Ring Polymer Diffusion Caused by Inter‐Ring Threading
Eun-Sang Lee, Soree Kim, YounJoon Jung
SJR Q1Macromolecular Rapid CommunicationsOA

Diffusion of long ring polymers in a melt is much slower than the reorganization of their internal structures. While direct evidence for entanglements has not been observed in the long ring polymers unlike linear polymer melts, threading between the rings is suspected to be the main reason for slowing down of ring polymer diffusion. It is, however, difficult to define the threading configuration between two rings because the rings have no chain end. In this work, evidence for threading dynamics

Materials ChemistryMaterials Science
9
Article|75 citations·2020
Thickness-Independent Semiconducting-to-Metallic Conversion in Wafer-Scale Two-Dimensional PtSe2 Layers by Plasma-Driven Chalcogen Defect Engineering
Mashiyat Sumaiya Shawkat, Jaeyoung Gil, Sang Sub Han, Tae‐Jun Ko, Mengjing Wang, Durjoy Dev, Junyoung Kwon, Gwan‐Hyoung Lee, Kyu Hwan Oh, Hee‐Suk Chung, Tania Roy, YounJoon Jung
SJR Q1ACS Applied Materials & Interfaces

Platinum diselenide (PtSe<sub>2</sub>) is an emerging class of two-dimensional (2D) transition-metal dichalcogenide (TMD) crystals recently gaining substantial interest, owing to its extraordinary properties absent in conventional 2D TMD layers. Most interestingly, it exhibits a thickness-dependent semiconducting-to-metallic transition, i.e., thick 2D PtSe<sub>2</sub> layers, which are intrinsically metallic, become semiconducting with their thickness reduced below a certain point. Realizing bot

Materials ChemistryMaterials Science
10
Article|74 citations·2002
Current status of single-molecule spectroscopy: Theoretical aspects
YounJoon Jung, Eli Barkai, R. Silbey
SJR Q1The Journal of Chemical Physics

We survey the current status of single-molecule spectroscopy in the view point of theoretical aspects. After an explanation of basic concepts in single-molecule spectroscopy, we focus on the following topics: (1) line shape phenomena in disordered media, (2) photon counting statistics for time-dependent fluctuations in single-molecule spectroscopy, (3) fluorescence intensity fluctuations for nonergodic systems, (4) time-resolved single-molecule fluorescence for conformational dynamics of single

BiophysicsBiochemistry, Genetics and Molecular Biology
11
Article|65 citations·2014
Graphene Oxide Supercapacitors: A Computer Simulation Study
Andrew D. DeYoung, Sang-Won Park, Nilesh R. Dhumal, Youngseon Shim, YounJoon Jung, Hyung J. Kim
SJR Q1The Journal of Physical Chemistry C

Supercapacitors with graphene oxide (GO) electrodes in a parallel plate configuration are studied with molecular dynamics (MD) simulations. The full range of electrode oxidation from 0% (pure graphene) to 100% (fully oxidized GO) is investigated by decorating the graphene surface with hydroxyl groups. The ionic liquid 1-ethyl-3-methylimidazolium tetrafluoroborate (EMI + BF 4 − ) is examined as an electrolyte. Capacitance tends to decrease with increasing electrode oxidation, in agreement with se

Electronic, Optical and Magnetic MaterialsMaterials Science
12
Article|64 citations·2020
Wafer-Scale Growth of 2D PtTe2 with Layer Orientation Tunable High Electrical Conductivity and Superior Hydrophobicity
Mengjing Wang, Tae‐Jun Ko, Mashiyat Sumaiya Shawkat, Sang Sub Han, Emmanuel Okogbue, Hee‐Suk Chung, Tae‐Sung Bae, Shahid Sattar, Jaeyoung Gil, Chanwoo Noh, Kyu Hwan Oh, YounJoon Jung
SJR Q1ACS Applied Materials & Interfaces

Platinum ditelluride (PtTe2) is an emerging semimetallic two-dimensional (2D) transition-metal dichalcogenide (TMDC) crystal with intriguing band structures and unusual topological properties. Despite much devoted efforts, scalable and controllable synthesis of large-area 2D PtTe2 with well-defined layer orientation has not been established, leaving its projected structure–property relationship largely unclarified. Herein, we report a scalable low-temperature growth of 2D PtTe2 layers on an area

Materials ChemistryMaterials Science
13
Article|56 citations·2017
Effects of Alkyl Chain Length on Interfacial Structure and Differential Capacitance in Graphene Supercapacitors: A Molecular Dynamics Simulation Study
Sungsik Jo, Sang-Won Park, Youngseon Shim, YounJoon Jung
SJR Q1Electrochimica Acta
Electronic, Optical and Magnetic MaterialsMaterials Science
14
Article|50 citations·2010
Fragility, Stokes–Einstein violation, and correlated local excitations in a coarse-grained model of an ionic liquid
Daun Jeong, M. Y. Choi, Hyung J. Kim, YounJoon Jung
SJR Q2Physical Chemistry Chemical PhysicsOA

Dynamics of a coarse-grained model for the room-temperature ionic liquid, 1-ethyl-3-methylimidazolium hexafluorophosphate, couched in the united-atom site representation are studied via molecular dynamics simulations. The dynamically heterogeneous behavior of the model resembles that of fragile supercooled liquids. At or close to room temperature, the model ionic liquid exhibits slow dynamics, characterized by nonexponential structural relaxation and subdiffusive behavior. The structural relaxat

CatalysisChemical Engineering
15
Article|48 citations·2016
Computer Simulation Study of Graphene Oxide Supercapacitors: Charge Screening Mechanism
Sang-Won Park, Andrew D. DeYoung, Nilesh R. Dhumal, Youngseon Shim, Hyung J. Kim, YounJoon Jung
SJR Q1The Journal of Physical Chemistry Letters

Graphene oxide supercapacitors in the parallel plate configuration are studied via molecular dynamics (MD) simulations. The full range of electrode oxidation from 0 to 100% is examined by oxidizing the graphene surface with hydroxyl groups. Two different electrolytes, 1-ethyl-3-methylimidazolium tetrafluoroborate (EMI(+)BF4(-)) as an ionic liquid and its 1.3 M solution in acetonitrile as an organic electrolyte, are considered. While the area-specific capacitance tends to decrease with increasing

Electronic, Optical and Magnetic MaterialsMaterials Science

Research Areas

Materials ChemistryAtomic and Molecular Physics, and OpticsElectrical and Electronic EngineeringElectronic, Optical and Magnetic MaterialsCatalysisComputational Theory and Mathematics

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