Sungkyunkwan UniversityDepartment of Advanced Materials Science and Engineering

Materials · mechanisms · discovery

Materials for batteries. Understood from atoms to systems.

We integrate first-principles computation, high-throughput screening, synthesis, and multiscale characterization to discover advanced energy materials.

Structure

Characterize materials across length and time scales.

Mechanism

Reveal the origins of electrochemical behavior and degradation.

Discovery

Design and validate materials for next-generation batteries.

More recent publications

2026

Fluorine-Free Corrosion-Resistant Electrolyte Design for Enhanced Stability in Lithium Metal Batteries

Advanced Materials · Vol. 38 · e22875

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2026

High-Performance Transparent p-Type Thin-Film Transistor and Circuit with Air-Stable CuI:Cd

Advanced Functional Materials · Vol. 36 · e20710

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2025

Synergistic electrochemical oxidation and electrosorption for enhanced arsenic removal using a modified Magnéli phase Ti₄O₇@nanodiamond electrocatalyst

Chemical Engineering Journal · Vol. 521 · 166468

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2025

Elucidating lithium-ion diffusion kinetics in cation-disordered rocksalt cathodes

Energy & Environmental Science · Vol. 18 · 2330–2341

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2025

Oxygen Dimerization-driven Cation Migration Induces Voltage Hysteresis in Disordered Rocksalt Cathodes

Journal of the American Chemical Society · Vol. 147 · 223–233

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Research areas

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New members

Join Energy Materials Lab.

Our group is recruiting graduate students and undergraduate researchers interested in rechargeable batteries, energy materials, first-principles calculations, and machine learning.

우리 연구실은 함께 연구할 대학원생과 학부연구생을 모집하고 있습니다. 이차전지, 에너지소재, 제일원리계산 및 머신러닝에 관심이 있는 학생은 CV와 간단한 자기소개를 보내주세요.