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Kang, Kisuk

Seoul National University · Engineering

About the Lab

Professor Kang's research lab focuses on advancing next-generation energy storage technologies, with a strong emphasis on sodium-ion and lithium-ion batteries for sustainable and large-scale applications. The lab explores novel electrode materials, electrolyte systems, and atomic-level design strategies to enhance rate capability, cycle stability, and energy density. Key research directions include understanding degradation mechanisms in high-voltage cathodes, developing low-cost anodes like natural graphite for sodium-ion batteries, and designing efficient non-precious metal catalysts for green hydrogen production.

sodium-ion batterieslithium-ion batteriesenergy storageelectrode materialsoxygen evolution reaction

Research Overview

Papers
402
Total Citations
53,781
Papers (5y)
71
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
71total
2021
2022
2023
2024
2025
Citations per year (5y)
4,299total
20212022202320242025

Selected Papers

15
1
Article|3,351 citations·2012
Electrode Materials for Rechargeable Sodium‐Ion Batteries: Potential Alternatives to Current Lithium‐Ion Batteries
Sung‐Wook Kim, Dong‐Hwa Seo, Xiaohua Ma, Gerbrand Ceder, Kisuk Kang
SJR Q1Advanced Energy Materials

Abstract Lithium (Li)‐ion batteries (LIB) have governed the current worldwide rechargeable battery market due to their outstanding energy and power capability. In particular, the LIB's role in enabling electric vehicles (EVs) has been highlighted to replace the current oil‐driven vehicles in order to reduce the usage of oil resources and generation of CO 2 gases. Unlike Li, sodium is one of the more abundant elements on Earth and exhibits similar chemical properties to Li, indicating that Na che

Electrical and Electronic EngineeringEngineering
2
Article|2,628 citations·2006
Electrodes with High Power and High Capacity for Rechargeable Lithium Batteries
Kisuk Kang, Ying Shirley Meng, Julien Bréger, Clare P. Grey, Gerbrand Ceder
SJR Q1Science

New applications such as hybrid electric vehicles and power backup require rechargeable batteries that combine high energy density with high charge and discharge rate capability. Using ab initio computational modeling, we identified useful strategies to design higher rate battery electrodes and tested them on lithium nickel manganese oxide [Li(Ni(0.5)Mn(0.5))O2], a safe, inexpensive material that has been thought to have poor intrinsic rate capability. By modifying its crystal structure, we obta

Electrical and Electronic EngineeringEngineering
3
Article|1,103 citations·2013
Understanding the Degradation Mechanisms of LiNi0.5Co0.2Mn0.3O2 Cathode Material in Lithium Ion Batteries
Sung‐Kyun Jung, Hyeokjo Gwon, Jihyun Hong, Kyu‐Young Park, Dong‐Hwa Seo, Haegyeom Kim, Jangsuk Hyun, Woo-Young Yang, Kisuk Kang
SJR Q1Advanced Energy Materials

LiNi x Co y Mn z O 2 (NCM, 0 ≤ x , y , z < 1) has become one of the most important cathode materials for next‐generation lithium (Li) ion batteries due to its high capacity and cost effectiveness compared with LiCoO 2 . However, the high‐voltage operation of NCM (>4.3 V) required for high capacity is inevitably accompanied by a more rapid capacity fade over numerous cycles. Here, the degradation mechanisms of LiNi 0.5 Co 0.2 Mn 0.3 O 2 are investigated during cycling under various cutoff v

Electrical and Electronic EngineeringEngineering
4
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
5
Article|934 citations·2018
Recent Progress on Multimetal Oxide Catalysts for the Oxygen Evolution Reaction
Ju Seong Kim, Byung‐Hoon Kim, Hyun Ah Kim, Kisuk Kang
SJR Q1Advanced Energy Materials

Abstract Hydrogen is a promising alternative fuel for efficient energy production and storage, with water splitting considered one of the most clean, environmentally friendly, and sustainable approaches to generate hydrogen. However, to meet industrial demands with electrolysis‐generated hydrogen, the development of a low‐cost and efficient catalyst for the oxygen evolution reaction (OER) is critical, while conventional catalysts are mostly based on precious metals. Many studies have thus focuse

Renewable Energy, Sustainability and the EnvironmentEnergy
6
Article|757 citations·2014
Sodium Storage Behavior in Natural Graphite using Ether‐based Electrolyte Systems
Haegyeom Kim, Jihyun Hong, Young‐Uk Park, Jin‐Soo Kim, Insang Hwang, Kisuk Kang
SJR Q1Advanced Functional MaterialsOA

This work reports that natural graphite is capable of Na insertion and extraction with a remarkable reversibility using ether‐based electrolytes. Natural graphite (the most well‐known anode material for Li–ion batteries) has been barely studied as a suitable anode for Na rechargeable batteries due to the lack of Na intercalation capability. Herein, graphite is not only capable of Na intercalation but also exhibits outstanding performance as an anode for Na ion batteries. The graphite anode deliv

Electrical and Electronic EngineeringEngineering
7
Article|576 citations·2020
Voltage decay and redox asymmetry mitigation by reversible cation migration in lithium-rich layered oxide electrodes
Donggun Eum, Byung‐Hoon Kim, Sung Joo Kim, Hyeokjun Park, Jinpeng Wu, Sung‐Pyo Cho, Gabin Yoon, Myeong Hwan Lee, Sung‐Kyun Jung, Wanli Yang, Won Mo Seong, Kyojin Ku
SJR Q1Nature MaterialsOA
Electrical and Electronic EngineeringEngineering
8
Article|574 citations·2011
Flexible energy storage devices based on graphene paper
Hyeokjo Gwon, Hyun‐Suk Kim, Kye Ung Lee, Dong‐Hwa Seo, Yun Chang Park, Yun‐Sung Lee, Byung Tae Ahn, Kisuk Kang
SJR Q1Energy & Environmental Science

Recently, great interest has been aroused in flexible/bendable electronic equipment such as rollup displays and wearable devices. As flexible energy conversion and energy storage units with high energy and power density represent indispensable components of flexible electronics, they should be carefully considered. However, it is a great challenge to fabricate flexible/bendable power sources. This is mainly due to the lack of reliable materials that combine both electronically superior conductiv

Electronic, Optical and Magnetic MaterialsMaterials Science
9
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
10
Article|564 citations·2013
A Novel High‐Energy Hybrid Supercapacitor with an Anatase TiO2–Reduced Graphene Oxide Anode and an Activated Carbon Cathode
Haegyeom Kim, Min‐Young Cho, Mok‐Hwa Kim, Kyu‐Young Park, Hyeokjo Gwon, Yunsung Lee, Kwang Chul Roh, Kisuk Kang
SJR Q1Advanced Energy Materials

Abstract A hybrid supercapacitor with high energy and power densities is reported. It comprises a composite anode of anatase TiO 2 and reduced graphene oxide and an activated carbon cathode in a non‐aqueous electrolyte. While intercalation compounds can provide high energy typically at the expense of power, the anatase TiO 2 nanoparticles are able to sustain both high energy and power in the hybrid supercapacitor. At a voltage range from 1.0 to 3.0 V, 42 W h kg −1 of energy is achieved at 800 W

Electronic, Optical and Magnetic MaterialsMaterials Science
11
Article|539 citations·2006
Factors that affect Li mobility in layered lithium transition metal oxides
Kisuk Kang, Gerbrand Ceder
SJR Q1Physical Review B

The diffusion constant of Li in electrode materials is a key aspect of the rate capability of rechargeable Li batteries. The factors that affect Li mobility in layered lithium transition metal oxides are systematically studied in this paper by means of first-principles calculations. In close packed oxides octahedral ions diffuse by migrating through intermediate tetrahedral sites. Our results indicate that the activation barrier for Li hopping is strongly affected by the size of the tetrahedral

Electrical and Electronic EngineeringEngineering
12
Article|519 citations·2017
Large-Scale Synthesis of Carbon-Shell-Coated FeP Nanoparticles for Robust Hydrogen Evolution Reaction Electrocatalyst
Dong Young Chung, Samuel Woojoo Jun, Gabin Yoon, Hyunjoong Kim, Ji Mun Yoo, Kug‐Seung Lee, Tae Hyun Kim, Heejong Shin, Arun K. Sinha, Soon Gu Kwon, Kisuk Kang, Taeghwan Hyeon
SJR Q1Journal of the American Chemical Society

A highly active and stable non-Pt electrocatalyst for hydrogen production has been pursued for a long time as an inexpensive alternative to Pt-based catalysts. Herein, we report a simple and effective approach to prepare high-performance iron phosphide (FeP) nanoparticle electrocatalysts using iron oxide nanoparticles as a precursor. A single-step heating procedure of polydopamine-coated iron oxide nanoparticles leads to both carbonization of polydopamine coating to the carbon shell and phosphid

Renewable Energy, Sustainability and the EnvironmentEnergy
13
Review|517 citations·2018
Recent Progress in Organic Electrodes for Li and Na Rechargeable Batteries
Sechan Lee, Giyun Kwon, Kyojin Ku, Kyungho Yoon, Sung‐Kyun Jung, Hee‐Dae Lim, Kisuk Kang
SJR Q1Advanced Materials

Organic rechargeable batteries, which use organics as electrodes, are excellent candidates for next-generation energy storage systems because they offer design flexibility due to the rich chemistry of organics while being eco-friendly and potentially cost efficient. However, their widespread usage is limited by intrinsic problems such as poor electronic conductivity, easy dissolution into liquid electrolytes, and low volumetric energy density. New types of organic electrode materials with variou

Electrical and Electronic EngineeringEngineering
14
Article|479 citations·2015
Sodium intercalation chemistry in graphite
Haegyeom Kim, Jihyun Hong, Gabin Yoon, Hyunchul Kim, Kyu‐Young Park, Min‐Sik Park, Won‐Sub Yoon, Kisuk Kang
SJR Q1Energy & Environmental Science

The solvated-Na-ion intercalation in graphite is investigated in terms of stoichiometry, staging structure, and solvated ion configuration using combined experimental and theoretical studies.

Electrical and Electronic EngineeringEngineering
15
Article|460 citations·2014
Superior Rechargeability and Efficiency of Lithium–Oxygen Batteries: Hierarchical Air Electrode Architecture Combined with a Soluble Catalyst
Hee‐Dae Lim, Hyelynn Song, Jin‐Soo Kim, Hyeokjo Gwon, Youngjoon Bae, Kyu‐Young Park, Jihyun Hong, Haegyeom Kim, Taewoo Kim, Yong Hyup Kim, Xavier Lepró, Raquel Ovalle‐Robles
SJR Q1Angewandte Chemie International Edition

The lithium-oxygen battery has the potential to deliver extremely high energy densities; however, the practical use of Li-O2 batteries has been restricted because of their poor cyclability and low energy efficiency. In this work, we report a novel Li-O2 battery with high reversibility and good energy efficiency using a soluble catalyst combined with a hierarchical nanoporous air electrode. Through the porous three-dimensional network of the air electrode, not only lithium ions and oxygen but als

Electrical and Electronic EngineeringEngineering

Research Areas

Electrical and Electronic EngineeringRenewable Energy, Sustainability and the EnvironmentElectronic, Optical and Magnetic MaterialsMaterials ChemistryPolymers and PlasticsBiomaterials

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