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Lee Byeongchan

Kyung Hee University · Engineering

About the Lab

Professor Lee Byeongchan's research lab specializes in first-principles electronic structure calculations to investigate the mechanical, structural, and electronic properties of advanced materials under extreme conditions. The lab focuses on nanomaterials such as silicon nanowires and icosahedral clusters, as well as high-pressure phases of transition metals like vanadium, exploring size effects, surface passivation, and phase transitions. Their work bridges quantum mechanical simulations with experimental observations, particularly in nanomechanics and high-pressure physics, to uncover fundamental mechanisms governing material stability and functionality. The lab also develops innovative strategies for stabilizing porous frameworks, such as metal–organic cages, through molecular bridging and fixing techniques.

first-principles calculationshigh-pressure phasesnanomechanicsmetal-organic cagessurface effects

Research Overview

Papers
90
Total Citations
1,297
Papers (5y)
18
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
18total
2022
2023
2024
2025
2026
Citations per year (5y)
122total
20222023202420252026

Selected Papers

15
1
Article|124 citations·2007
First-principles calculation of mechanical properties of Si⟨001⟩ nanowires and comparison to nanomechanical theory
Byeongchan Lee, Robert E. Rudd
SJR Q1Physical Review BOA

We report the results of first-principles density functional theory calculations of the Young's modulus and other mechanical properties of hydrogen-passivated Si⟨001⟩ nanowires. The nanowires are taken to have predominantly {100} surfaces, with small {110} facets according to the Wulff shape. The Young's modulus, the equilibrium length, and the constrained residual stress of a series of prismatic beams of differing sizes are found to have size dependences that scale like the surface area to volu

Biomedical EngineeringEngineering
2
Article|112 citations·2007
First-principles study of the Young’s modulus of Si ⟨001⟩ nanowires
Byeongchan Lee, Robert E. Rudd
SJR Q1Physical Review BOA

We report the results of first-principles density functional theory calculations of the Young's modulus and other mechanical properties of hydrogen-passivated Si ⟨001⟩ anowires. The nanowires are taken to have predominantly {100} surfaces, with small {110} facets. The Young's modulus, the equilibrium length, and the residual stress of a series of prismatic wires are found to have a size dependence that scales like the surface area to volume ratio for all but the smallest wires. We analyze the ph

Biomedical EngineeringEngineering
3
Article|70 citations·2007
Theoretical confirmation of a high-pressure rhombohedral phase in vanadium metal
Byeongchan Lee, Robert E. Rudd, John E. Klepeis, Per Söderlind, A. Landa
SJR Q1Physical Review BOA

Recent diamond-anvil-cell (DAC) experiments revealed a new phase in vanadium metal at high pressure. Here we present results from first-principles electronic-structure calculations confirming the existence of this phase. The structure corresponds to a rhombohedral distortion of the bcc ambient-pressure phase. The calculated transition pressure $(0.84\phantom{\rule{0.3em}{0ex}}\mathrm{Mbar})$ and density compare reasonably with the measured data. Interestingly, a reentrant bcc phase is discovered

GeophysicsEarth and Planetary Sciences
4
Article|44 citations·2008
Elastic constants and volume changes associated with two high-pressure rhombohedral phase transformations in vanadium
Byeongchan Lee, Robert E. Rudd, John E. Klepeis, Richard Becker
SJR Q1Physical Review BOA

We present results from ab initio calculations of the mechanical properties of the rhombohedral phase $(\ensuremath{\beta})$ of vanadium metal reported in recent experiments, and other predicted high-pressure phases ($\ensuremath{\gamma}$ and bcc), focusing on properties relevant to dynamic experiments. We find that the volume change associated with these transitions is small: no more than 0.15% (for $\ensuremath{\beta}\text{\ensuremath{-}}\ensuremath{\gamma}$). Calculations of the single crysta

GeophysicsEarth and Planetary Sciences
5
Article|29 citations·2017
Phase transformations, detwinning and superelasticity of shape-memory NiTi from MEAM with practical capability
Mario Muralles, Soon‐Dong Park, Sung Youb Kim, Byeongchan Lee
SJR Q1Computational Materials Science
Materials ChemistryMaterials Science
6
Article|26 citations·2007
Comparative study of Ti and Ni clusters from first principles
Byeongchan Lee, Geun Woo Lee
SJR Q1The Journal of Chemical PhysicsOA

Icosahedral clusters in Ti and Ni are studied with first-principles density functional calculations. We find significant distortion on the Ti icosahedron caused by the strong interaction between surface atoms on the icosahedron but not between the center atom and surface atoms, whereas no such distortion is observed on Ni clusters. In addition, distortion becomes more severe when atoms are added to the Ti(13) cluster resulting in short bonds. Such distorted icosahedra having short bonds are esse

Atmospheric ScienceEarth and Planetary Sciences
7
Article|22 citations·2001
Polarisation diversity microstrip base station antenna at 2 GHz using T-shaped aperture-coupled feeds
Byeongchan Lee, S. Kwon, Jae Yeon Choi
IEE Proceedings - Microwaves Antennas and Propagation

A prototype 1 × 4 microstrip array antenna for the IMT-2000 base station using +/–45° slanted polarisation diversity is proposed to overcome the problems of space diversity. ‘T’ shaped aperture coupled feeds are used to obtain good isolation. For a single radiating element, isolation of up to 50 dB between the two ports has been obtained. Stacked patches are also used for broadband operation. For the 1 × 4 array, the distance between each radiating element is 0.92λ0 and a corporate feed is used.

Aerospace EngineeringEngineering
8
Article|22 citations·2022
Bridging and Fixing Metal–Organic Cages
Byeongchan Lee, In‐Hyeok Park, Jinhee Park
SJR Q1ACS Materials Letters

Despite their well-defined and intrinsic porous structures, metal–organic cages (MOCs) readily lose their crystalline arrangement upon solvent exchange and desolvation, which significantly reduces their porosity. Herein, we report a novel bridging and fixing strategy for retaining the ordered arrangement of MOCs. In the bridging process, electrophilic aromatic substitution reactions involving the 4,6-dihydroxy-1,3-benzenedicarboxylate (m-DOBDC2–) ligands of cuboctahedral MOCs and formaldehyde co

Inorganic ChemistryChemistry
9
Article|20 citations·2023
Unlocking High Porosity: Post‐Synthetic Solvothermal Treatment of Cu‐Paddlewheel Based Metal–Organic Cages
Byeongchan Lee, Bogyeong Go, Byunghyuck Jung, Jinhee Park
SJR Q1Small

Abstract Metal–organic cages (MOCs) have garnered significant attention due to their unique discrete structures, intrinsic porosity, designability, and tailorability. However, weak inter‐cage interactions, such as van der Waals forces and hydrogen bonding can cause solid‐state MOCs to lose structural integrity during desolvation, leading to the loss of porosity. In this work, a novel strategy to retain the permanent porosity of Cu‐paddlewheel‐based MOCs, enabling their use as heterogeneous catal

Inorganic ChemistryChemistry
10
Article|19 citations·2006
Extended embedded-atom method for platinum nanoparticles
Byeongchan Lee, Kyeongjae Cho
SJR Q2Surface Science
Atomic and Molecular Physics, and OpticsPhysics and Astronomy
11
Article|18 citations·2008
Local structure of liquid Ti: Ab initio molecular dynamics study
Byeongchan Lee, Geun Woo Lee
SJR Q1The Journal of Chemical Physics

Local order of liquid Ti is studied by ab initio molecular dynamics to address the unique liquid structure factor in experiments reported recently. The present study reveals that the local order of liquid Ti is in the form of fragments of the distorted icosahedral short range order, where the distortion is induced by strong bond order effects. We show that the fragments in the short-bond rich region separated from the background liquid account for the pronounced feature in structure factor of li

Materials ChemistryMaterials Science
12
Article|11 citations·2011
Size-dependent Si nanowire mechanics are invariant to changes in the surface state
Byeongchan Lee, Robert E. Rudd
SJR Q1Physical Review B

We investigate the mechanics of Si nanowires using first-principles theory and find that the nanowires exhibit the same softening (decreased Young's modulus) as the wire diameter is reduced, regardless of the surface reconstruction or passivation. This invariance is contrary to the expectation that the lower coordination of the bare surfaces affects the bond order and leads to stiffer nanowires than the H-passivated nanowires. We rigorously connect electronic structures and mechanical properties

Biomedical EngineeringEngineering
13
Article|10 citations·2022
Solvent‐mediated single‐crystal‐to‐single‐crystal transformation of metal–organic cage self‐assembly
Byeongchan Lee, Dohyun Moon, Jinhee Park
SJR Q2Bulletin of the Korean Chemical SocietyOA

Abstract Metal–organic polyhedra (MOPs) are intrinsically porous cage‐like structures; however, they frequently display low porosity due to their agglomeration caused by solvent exchange and removal, which results in the blockage of pore windows. This study presents the unprecedented single‐crystal‐to‐single‐crystal transformation of a cuboctahedral MOP‐OH ([Cu 24 L 24 ], H 2 L = 5‐hydroxybenzene‐1,3‐dicarboxylic acid) using a simple solvent exchange from coordinating N , N ‐diethylformamide to

Inorganic ChemistryChemistry
14
Article|9 citations·2016
A liquid-liquid transition can exist in monatomic transition metals with a positive melting slope
Byeongchan Lee, Geun Woo Lee
SJR Q1Scientific ReportsOA

Liquid-liquid transitions under high pressure are found in many elemental materials, but the transitions are known to be associated with either sp-valent materials or f-valent rare-earth elements, in which the maximum or a negative slope in the melting line is readily suggestive of the transition. Here we find a liquid-liquid transition with a positive melting slope in transition metal Ti from structural, electronic, and thermodynamic studies using ab-initio molecular dynamics calculations, show

Materials ChemistryMaterials Science
15
Article|9 citations·2016
Wideband absorber using silver nanowire resistive film
Seunghyun Lee, Byeongchan Lee
SJR Q3Electronics Letters

A light‐weight and wideband X‐band absorber employing a resistive silver nanowire (AgNW) film is presented. One unit of the absorber is composed of a cross‐shaped AgNW resistive film and a conducting plane separated by a 7.5 mm ( λ 0 /4 at 10 GHz) Styrofoam ( ε r = 1.03) layer. The used surface resistance of the film is 42 Ω per square. The 90% absorption bandwidth of the absorber is 80% from 6 to 14 GHz with a near complete absorption at the centre frequency of 10 GHz. Besides, it is also shown

Aerospace EngineeringEngineering

Research Areas

Materials ChemistryBiomedical EngineeringAerospace EngineeringElectrical and Electronic EngineeringInorganic ChemistryMechanical Engineering

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