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Hyung-Seop Kim

Sungkyunkwan University · Engineering

About the Lab

Professor Hyung-Seop Kim's research lab specializes in the development of advanced functional materials for sustainable energy applications, with a primary focus on rechargeable battery technologies. The lab explores innovative cathode materials—particularly sodium-ion and lithium-ion batteries—by designing novel polyanionic frameworks that enable high stability, efficient ion transport, and tunable electrochemical properties. Key research directions include structural characterization using advanced diffraction techniques (XRD, neutron diffraction), first-principles calculations to understand ion diffusion pathways and redox mechanisms, and the synthesis of iron- and manganese-based cathodes for cost-effective, high-voltage energy storage systems. The lab aims to address critical challenges in energy density, cycle life, and material sustainability for grid-scale energy storage.

sodium-ion batteriespolyanion cathodesion diffusionstructural characterizationenergy storage

Research Overview

Papers
249
Total Citations
12,499
Papers (5y)
84
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
84total
2021
2022
2023
2024
2025
Citations per year (5y)
1,750total
20212022202320242025

Selected Papers

15
1
Article|983 citations·2016
Recent Progress in Electrode Materials for Sodium‐Ion Batteries
Hyungsub Kim, Haegyeom Kim, Ding Zhang, Myeong Hwan Lee, Kyungmi Lim, Gabin Yoon, Kisuk Kang
SJR Q1Advanced Energy MaterialsOA

Grid‐scale energy storage systems (ESSs) that can connect to sustainable energy resources have received great attention in an effort to satisfy ever‐growing energy demands. Although recent advances in Li‐ion battery (LIB) technology have increased the energy density to a level applicable to grid‐scale ESSs, the high cost of Li and transition metals have led to a search for lower‐cost battery system alternatives. Based on the abundance and accessibility of Na and its similar electrochemistry to t

Electrical and Electronic EngineeringEngineering
2
Article|572 citations·2012
New Iron-Based Mixed-Polyanion Cathodes for Lithium and Sodium Rechargeable Batteries: Combined First Principles Calculations and Experimental Study
Hyungsub Kim, Inchul Park, Dong‐Hwa Seo, Seongsu Lee, Sung‐Wook Kim, Woo Jun Kwon, Young‐Uk Park, Chul Sung Kim, Seokwoo Jeon, Kisuk Kang
SJR Q1Journal of the American Chemical Society

New iron-based mixed-polyanion compounds Li(x)Na(4-x)Fe(3)(PO(4))(2)(P(2)O(7)) (x = 0-3) were synthesized, and their crystal structures were determined. The new compounds contained three-dimensional (3D)sodium/lithium paths supported by P(2)O(7) pillars in the crystal. First principles calculations identified the complex 3D paths with their activation barriers and revealed them as fast ionic conductors. The reversible electrode operation was found in both Li and Na cells with capacities of one-e

Electrical and Electronic EngineeringEngineering
3
Article|372 citations·2013
Understanding the Electrochemical Mechanism of the New Iron-Based Mixed-Phosphate Na4Fe3(PO4)2(P2O7) in a Na Rechargeable Battery
Hyungsub Kim, Inchul Park, Seongsu Lee, Hyunchul Kim, Kyu‐Young Park, Young‐Uk Park, Haegyeom Kim, Jongsoon Kim, Hee‐Dae Lim, Won‐Sub Yoon, Kisuk Kang
SJR Q1Chemistry of Materials

Compounds with a mixed polyanion framework have recently gained attention as a new class of compounds for material exploration. The potential tunability of the structure by using various combinations of polyanions can potentially lead to a novel cathode. However, the redox reaction in complex structures often involves complex structural evolutions during the electrochemical reaction, which require careful analysis. We investigated the electrochemical mechanism of Na x Fe 3 (PO 4 ) 2 (P 2 O 7 ) (

Electrical and Electronic EngineeringEngineering
4
Article|240 citations·2015
Anomalous Jahn–Teller behavior in a manganese-based mixed-phosphate cathode for sodium ion batteries
Hyungsub Kim, Gabin Yoon, Inchul Park, Kyu‐Young Park, Byungju Lee, Jongsoon Kim, Young‐Uk Park, Sung‐Kyun Jung, Hee‐Dae Lim, Docheon Ahn, Seongsu Lee, Kisuk Kang
SJR Q1Energy & Environmental Science

We report a 3.8 V manganese-based mixed-phosphate cathode material for applications in sodium rechargeable batteries; i.e. , Na 4 Mn 3 (PO 4 ) 2 (P 2 O 7 ).

Electrical and Electronic EngineeringEngineering
5
Article|164 citations·2020
High‐Voltage‐Driven Surface Structuring and Electrochemical Stabilization of Ni‐Rich Layered Cathode Materials for Li Rechargeable Batteries
Seok Hyun Song, Moses Azong Cho, Inchul Park, Jonggyu Yoo, Kyung‐Tae Ko, Jihyun Hong, Jongsoon Kim, Sung‐Kyun Jung, Maxim Avdeev, Sungdae Ji, Seongsu Lee, Joona Bang
SJR Q1Advanced Energy Materials

Abstract Layered lithium–nickel–cobalt–manganese oxide (NCM) materials have emerged as promising alternative cathode materials owing to their high energy density and electrochemical stability. Although high reversible capacity has been achieved for Ni‐rich NCM materials when charged beyond 4.2 V versus Li + /Li, full lithium utilization is hindered by the pronounced structural degradation and electrolyte decomposition. Herein, the unexpected realization of sustained working voltage as well as im

Electrical and Electronic EngineeringEngineering
6
Article|125 citations·2019
Li+ conduction in air-stable Sb-Substituted Li4SnS4 for all-solid-state Li-Ion batteries
Hiram Kwak, Kern Ho Park, Daseul Han, Kyung‐Wan Nam, Hyungsub Kim, Yoon Seok Jung
SJR Q1Journal of Power Sources
Electrical and Electronic EngineeringEngineering
7
Article|116 citations·2011
Neutron and X-ray Diffraction Study of Pyrophosphate-Based Li2–xMP2O7 (M = Fe, Co) for Lithium Rechargeable Battery Electrodes
Hyungsub Kim, Seongsu Lee, Young‐Uk Park, Haegyeom Kim, Jongsoon Kim, Seokwoo Jeon, Kisuk Kang
SJR Q1Chemistry of Materials

Structural characterization of Li 2– x MP 2 O 7 (M = Fe, Co) was carried out using neutron diffraction (ND) and X-ray diffraction (XRD) analyses to elucidate structural information and structural changes during an electrochemical reaction. The crystal system and space group were determined to be monoclinic P 2 1 / c for both materials with a = 11.0192 (4) Å, b = 9.7488 (3) Å, c = 9.8057 (4) Å, and β = 101.569 (3)° for Li 2– x FeP 2 O 7 and a = 10.9574 (3), b = 9.6921 (3), c = 9.7611 (3), and β =

Electrical and Electronic EngineeringEngineering
8
Article|107 citations·2022
Li+ conduction in aliovalent-substituted monoclinic Li2ZrCl6 for all-solid-state batteries: Li2+xZr1-xMxCl6 (M = In, Sc)
Hiram Kwak, Daseul Han, Jun Pyo Son, Jong Seok Kim, Juhyoun Park, Kyung‐Wan Nam, Hyungsub Kim, Yoon Seok Jung
SJR Q1Chemical Engineering Journal
Electrical and Electronic EngineeringEngineering
9
Article|104 citations·2016
Highly Stable Iron- and Manganese-Based Cathodes for Long-Lasting Sodium Rechargeable Batteries
Hyungsub Kim, Gabin Yoon, Inchul Park, Jihyun Hong, Kyu‐Young Park, Jongsoon Kim, Kug‐Seung Lee, Nark-Eon Sung, Seongsu Lee, Kisuk Kang
SJR Q1Chemistry of Materials

The development of long-lasting and low-cost rechargeable batteries lies at the heart of the success of large-scale energy storage systems for various applications. Here, we introduce Fe- and Mn-based Na rechargeable battery cathodes that can stably cycle more than 3000 times. The new cathode is based on the solid-solution phases of Na 4 Mn x Fe 3– x (PO 4 ) 2 (P 2 O 7 ) ( x = 1 or 2) that we successfully synthesized for the first time. Electrochemical analysis and ex situ structural investigati

Electrical and Electronic EngineeringEngineering
10
Article|68 citations·2017
Effect of particle size and amorphous phase on the electrochromic properties of kinetically deposited WO3 films
Hyungsub Kim, Dahyun Choi, Kwangmin Kim, Won‐Shik Chu, Doo‐Man Chun, Caroline Sunyong Lee
SJR Q1Solar Energy Materials and Solar Cells
Polymers and PlasticsMaterials Science
11
Article|54 citations·2021
Janus Graphene Oxide Sheets with Fe3O4 Nanoparticles and Polydopamine as Anodes for Lithium-Ion Batteries
Jiwon Jang, Seok Hyun Song, Hyeri Kim, Junsoo Moon, Hyungju Ahn, Kyoung-Il Jo, Joona Bang, Hyungsub Kim, Jaseung Koo
SJR Q1ACS Applied Materials & Interfaces

In this study, a one-step process to fabricate "Janus"-structured nanocomposites with iron oxide (Fe<sub>3</sub>O<sub>4</sub>) nanoparticles (Fe<sub>3</sub>O<sub>4</sub> NPs) and polydopamine (PDA) on each side of a graphene oxide (GO) nanosheet using the Langmuir-Schaefer technique has been proposed. The Fe<sub>3</sub>O<sub>4</sub> NPs-GO hybrid is used as a high-capacity active material, while PDA is added as a binder due to its unique wet-resistant adhesive property. The transmission electron

Electrical and Electronic EngineeringEngineering
12
Article|50 citations·2006
Atomic Layer Deposition of Ultrathin Metal-Oxide Films for Nano-Scale Device Applications
김형섭, Paul McIntyre

With continuous dimensional scaling of high-performance transistors, high-k dielectrics are emerging as a very important research area in Si-based FET (field effect transistor) devices. Additionally, due to the uniquely high film quality, easy thickness controllability down to the nm range, and near perfect conformality, the ALD (atomic layer deposition) technique is also emerging as a future deposition technique for various applications. By combining these two promising areas, it is quite possi

13
Article|43 citations·2018
Fabrication of a semi-transparent flexible humidity sensor using kinetically sprayed cupric oxide film
Hyungsub Kim, Soobin Park, Yunchan Park, Dahyun Choi, Bongyoung Yoo, Caroline Sunyong Lee
SJR Q1Sensors and Actuators B Chemical
Materials ChemistryMaterials Science
14
Article|32 citations·2021
Critical Role of Ti4+ in Stabilizing High‐Voltage Redox Reactions in Li‐Rich Layered Material
Moses Azong Cho, Seok Hyun Song, Seokjae Hong, Kyoung Sun Kim, Maxim Avdeev, Jonggyu Yoo, Kyung‐Tae Ko, Jihyun Hong, Jongsoon Kim, Seongsu Lee, Hyungsub Kim
SJR Q1Small

Abstract Li‐rich layered oxide materials are considered promising candidates for high‐capacity cathodes for battery applications and improving the reversibility of the anionic redox reaction is the key to exploiting the full capacity of these materials. However, permanent structural change of the electrode occurring upon electrochemical cycling results in capacity and voltage decay. In view of these factors, Ti 4+ ‐substituted Li 2 IrO 3 (Li 2 Ir 0.75 Ti 0.25 O 3 ) is synthesized, which undergoe

Electrical and Electronic EngineeringEngineering
15
Article|31 citations·2016
Effect of particle size on various substrates for deposition of NiO film via nanoparticle deposition system
Hyungsub Kim, Seungkyu Yang, Sung‐Hoon Ahn, Caroline Sunyong Lee
SJR Q2Thin Solid Films
Materials ChemistryMaterials Science

Research Areas

Electrical and Electronic EngineeringMaterials ChemistryPolymers and PlasticsMechanical EngineeringRenewable Energy, Sustainability and the EnvironmentCivil and Structural Engineering

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