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Sang Kyu Kwak

Korea University · 工学

研究室紹介

Professor Sang Kyu Kwak's research lab specializes in the design and development of advanced functional materials for energy conversion and storage, with a strong focus on next-generation batteries and sustainable energy technologies. Key research directions include the rational design of hole-transport materials and solid-state electrolytes for perovskite solar cells, the mechanistic understanding of ion storage in hard carbon anodes for sodium- and potassium-ion batteries, and the creation of smart, stimuli-responsive materials for targeted drug delivery using metal-organic frameworks. The lab integrates experimental synthesis with advanced theoretical and computational modeling to establish structure-property relationships and guide material optimization.

energy storageperovskite solar cellsion conductorsfunctional materialsbattery materials

Research Overview

Papers
401
Total Citations
20,735
Papers (5y)
118
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
118total
2022
2023
2024
2025
2026
Citations per year (5y)
2,732total
20222023202420252026

Selected Papers

15
1
Article|1,718 citations·2019
Methylammonium Chloride Induces Intermediate Phase Stabilization for Efficient Perovskite Solar Cells
Minjin Kim, Gi‐Hwan Kim, Tae Kyung Lee, In Woo Choi, Hyewon Choi, Yimhyun Jo, Yung Jin Yoon, Jae Won Kim, Jae Won Kim, Jiyun Lee, Daihong Huh, Heon Lee
SJR Q1JouleOA
Electrical and Electronic EngineeringEngineering
2
Article|1,495 citations·2020
Stable perovskite solar cells with efficiency exceeding 24.8% and 0.3-V voltage loss
Mingyu Jeong, In Woo Choi, Eun Min Go, Yongjoon Cho, Minjin Kim, Byongkyu Lee, Seonghun Jeong, Yimhyun Jo, Hyewon Choi, Jiyun Lee, Jin‐Hyuk Bae, Sang Kyu Kwak
SJR Q1Science

Further improvement and stabilization of perovskite solar cell (PSC) performance are essential to achieve the commercial viability of next-generation photovoltaics. Considering the benefits of fluorination to conjugated materials for energy levels, hydrophobicity, and noncovalent interactions, two fluorinated isomeric analogs of the well-known hole-transporting material (HTM) Spiro-OMeTAD are developed and used as HTMs in PSCs. The structure-property relationship induced by constitutional isomer

Electrical and Electronic EngineeringEngineering
3
Article|450 citations·2020
Revealing the Intercalation Mechanisms of Lithium, Sodium, and Potassium in Hard Carbon
Stevanus Alvin, Handi Setiadi Cahyadi, Jieun Hwang, Wonyoung Chang, Sang Kyu Kwak, Jaehoon Kim
SJR Q1Advanced Energy Materials

Abstract Hard carbon is the most promising anode material for sodium‐ion batteries and potassium‐ion batteries owing to its high stability, widespread availability, low‐cost, and excellent performance. Understanding the carrier‐ion storage mechanism is a prerequisite for developing high‐performance electrode materials; however, the underlying ion storage mechanism in hard carbon has been a topic of debate because of its complex structure. Herein, it is demonstrated that the Li + ‐, Na + ‐, and K

Electrical and Electronic EngineeringEngineering
4
Article|416 citations·2019
Solvent-Free, Single Lithium-Ion Conducting Covalent Organic Frameworks
Ki-Hun Jeong, Sodam Park, Gwan Yeong Jung, Su Hwan Kim, Yong-Hyeok Lee, Sang Kyu Kwak, Sang‐Young Lee
SJR Q1Journal of the American Chemical Society

Porous crystalline materials such as covalent organic frameworks and metal-organic frameworks have garnered considerable attention as promising ion conducting media. However, most of them additionally incorporate lithium salts and/or solvents inside the pores of frameworks, thus failing to realize solid-state single lithium-ion conduction behavior. Herein, we demonstrate a lithium sulfonated covalent organic framework (denoted as TpPa-SO<sub>3</sub>Li) as a new class of solvent-free, single lith

Electrical and Electronic EngineeringEngineering
5
Article|321 citations·2020
Atomically dispersed Pt–N4 sites as efficient and selective electrocatalysts for the chlorine evolution reaction
Taejung Lim, Gwan Yeong Jung, Jae Hyung Kim, Sung O Park, Jaehyun Park, Yong‐Tae Kim, Seok Ju Kang, Hu Young Jeong, Sang Kyu Kwak, Sang Hoon Joo
SJR Q1Nature CommunicationsOA

Abstract Chlorine evolution reaction (CER) is a critical anode reaction in chlor-alkali electrolysis. Although precious metal-based mixed metal oxides (MMOs) have been widely used as CER catalysts, they suffer from the concomitant generation of oxygen during the CER. Herein, we demonstrate that atomically dispersed Pt−N 4 sites doped on a carbon nanotube (Pt 1 /CNT) can catalyse the CER with excellent activity and selectivity. The Pt 1 /CNT catalyst shows superior CER activity to a Pt nanopartic

Renewable Energy, Sustainability and the EnvironmentEnergy
6
Article|270 citations·2021
Subnano-sized silicon anode via crystal growth inhibition mechanism and its application in a prototype battery pack
Jaekyung Sung, Namhyung Kim, Jiyoung Ma, Jeong Hyeon Lee, Se Hun Joo, Taeyong Lee, Sujong Chae, Moonsu Yoon, Yoonkwang Lee, Jaeseong Hwang, Sang Kyu Kwak, Jaephil Cho
SJR Q1Nature Energy
Electrical and Electronic EngineeringEngineering
7
Article|250 citations·2016
COF-Net on CNT-Net as a Molecularly Designed, Hierarchical Porous Chemical Trap for Polysulfides in Lithium–Sulfur Batteries
JongTae Yoo, Sung-Ju Cho, Gwan Yeong Jung, Su Hwan Kim, Keun-Ho Choi, Jeong Hun Kim, Chang Kee Lee, Sang Kyu Kwak, Sang‐Young Lee
SJR Q1Nano Letters

The hierarchical porous structure has garnered considerable attention as a multiscale engineering strategy to bring unforeseen synergistic effects in a vast variety of functional materials. Here, we demonstrate a "microporous covalent organic framework (COF) net on mesoporous carbon nanotube (CNT) net" hybrid architecture as a new class of molecularly designed, hierarchical porous chemical trap for lithium polysulfides (Li2Sx) in Li-S batteries. As a proof of concept for the hybrid architecture,

Electrical and Electronic EngineeringEngineering
8
Article|248 citations·2021
Replacing conventional battery electrolyte additives with dioxolone derivatives for high-energy-density lithium-ion batteries
Sewon Park, Seo Yeong Jeong, Tae Kyung Lee, Min Woo Park, Hyeong Yong Lim, Jaekyung Sung, Jaephil Cho, Sang Kyu Kwak, Sung You Hong, Nam‐Soon Choi
SJR Q1Nature CommunicationsOA

Abstract Solid electrolyte interphases generated using electrolyte additives are key for anode-electrolyte interactions and for enhancing the lithium-ion battery lifespan. Classical solid electrolyte interphase additives, such as vinylene carbonate and fluoroethylene carbonate, have limited potential for simultaneously achieving a long lifespan and fast chargeability in high-energy-density lithium-ion batteries (LIBs). Here we report a next-generation synthetic additive approach that allows to f

Electrical and Electronic EngineeringEngineering
9
Article|246 citations·2017
Mitochondria localization induced self-assembly of peptide amphiphiles for cellular dysfunction
M. T. Jeena, L. Palanikumar, Eun Min Go, Inhye Kim, Myoung Gyun Kang, Seonik Lee, Sooham Park, Huyeon Choi, Chaekyu Kim, Seon‐Mi Jin, Sung Chul Bae, Hyun‐Woo Rhee
SJR Q1Nature CommunicationsOA

Achieving spatiotemporal control of molecular self-assembly associated with actuation of biological functions inside living cells remains a challenge owing to the complexity of the cellular environments and the lack of characterization tools. We present, for the first time, the organelle-localized self-assembly of a peptide amphiphile as a powerful strategy for controlling cellular fate. A phenylalanine dipeptide (FF) with a mitochondria-targeting moiety, triphenyl phosphonium (Mito-FF), prefere

BiomaterialsMaterials Science
10
Article|229 citations·2015
Monolayer-Precision Synthesis of Molybdenum Sulfide Nanoparticles and Their Nanoscale Size Effects in the Hydrogen Evolution Reaction
Bora Seo, Gwan Yeong Jung, Young Jin, Hu Young Jeong, Jae Yeong Cheon, Jeong Hyeon Lee, Ho Young Kim, Jin Chul Kim, Hyeon Suk Shin, Sang Kyu Kwak, Sang Hoon Joo
SJR Q1ACS Nano

Metal sulfide-based nanostructured materials have emerged as promising catalysts for hydrogen evolution reaction (HER), and significant progress has been achieved in enhancing their activity and durability for the HER. The understanding of nanoscale size-dependent catalytic activities can suggest critical information regarding catalytic reactivity, providing the scientific basis for the design of advanced catalysts. However, nanoscale size effects in metal sulfide-based HER catalysts have not ye

Mechanical EngineeringEngineering
11
Article|198 citations·2019
N- and B-Codoped Graphene: A Strong Candidate To Replace Natural Peroxidase in Sensitive and Selective Bioassays
Min Su Kim, Min Su Kim, Seongyeon Cho, Se Hun Joo, Junsang Lee, Junsang Lee, Sang Kyu Kwak, Moon Il Kim, Moon Il Kim, Jinwoo Lee, Jinwoo Lee
SJR Q1ACS Nano

The work describes a carbon-based peroxidase mimic, N- and B-codoped reduced graphene oxide (NB-rGO), which shows high peroxidase-like activity without oxidase-like activity and has a catalytic efficiency nearly 1000-fold higher than that of undoped rGO. The high catalytic activity of NB-rGO is explained by density functional theory by calculating Gibbs free energy change during the peroxide decomposition reaction. Acetylcholine and C-reactive protein are successfully quantified with high sensit

Materials ChemistryMaterials Science
12
Article|190 citations·2019
In-situ local phase-transitioned MoSe2 in La0.5Sr0.5CoO3-δ heterostructure and stable overall water electrolysis over 1000 hours
Nam Khen Oh, Changmin Kim, Junghyun Lee, Ohhun Kwon, Yunseong Choi, Gwan Yeong Jung, Hyeong Yong Lim, Sang Kyu Kwak, Guntae Kim, Hyesung Park
SJR Q1Nature CommunicationsOA

Abstract Developing efficient bifunctional catalysts for overall water splitting that are earth-abundant, cost-effective, and durable is of considerable importance from the practical perspective to mitigate the issues associated with precious metal-based catalysts. Herein, we introduce a heterostructure comprising perovskite oxides (La 0.5 Sr 0.5 CoO 3– δ ) and molybdenum diselenide (MoSe 2 ) as an electrochemical catalyst for overall water electrolysis. Interestingly, formation of the heterostr

Renewable Energy, Sustainability and the EnvironmentEnergy
13
Article|186 citations·2020
Cyclic Aminosilane‐Based Additive Ensuring Stable Electrode–Electrolyte Interfaces in Li‐Ion Batteries
Koeun Kim, Daeyeon Hwang, Saehun Kim, Sung O Park, Hyungyeon Cha, Yoon‐Sung Lee, Jaephil Cho, Sang Kyu Kwak, Nam‐Soon Choi
SJR Q1Advanced Energy Materials

Abstract Ni‐rich cathodes are considered feasible candidates for high‐energy‐density Li‐ion batteries (LIBs). However, the structural degradation of Ni‐rich cathodes on the micro‐ and nanoscale leads to severe capacity fading, thereby impeding their practical use in LIBs. Here, it is reported that 3‐(trimethylsilyl)‐2‐oxazolidinone (TMS‐ON) as a multifunctional additive promotes the dissociation of LiPF 6 , prevents the hydrolysis of ion‐paired LiPF 6 (which produces undesired acidic compounds i

Electrical and Electronic EngineeringEngineering
14
Article|182 citations·2020
Solving two environmental issues simultaneously: Waste polyethylene terephthalate plastic bottle-derived microporous carbons for capturing CO2
Xiangzhou Yuan, Jong Gyu Lee, Hee-Sun Yun, Shuai Deng, Yu Jin Kim, Ji Eun Lee, Sang Kyu Kwak, Ki Bong Lee
SJR Q1Chemical Engineering JournalOA
Mechanical EngineeringEngineering
15
Article|176 citations·2019
MOF × Biopolymer: Collaborative Combination of Metal–Organic Framework and Biopolymer for Advanced Anticancer Therapy
Kibeom Kim, Sungmin Lee, Eunji Jin, L. Palanikumar, Jeong Hyeon Lee, Jin Chul Kim, Jung Seung Nam, Batakrishna Jana, Tae‐Hyuk Kwon, Sang Kyu Kwak, Wonyoung Choe, Ja‐Hyoung Ryu
SJR Q1ACS Applied Materials & Interfaces

Metal-organic framework (MOF) nanoparticles with high porosity and greater tunability have emerged as new drug delivery vehicles. However, premature drug release still remains a challenge in the MOF delivery system. Here, we report an enzyme-responsive, polymer-coated MOF gatekeeper system using hyaluronic acid (HA) and PCN-224 nanoMOF. The external surface of nanoMOF can be stably covered by HA through multivalent coordination bonding between the Zr cluster and carboxylic acid of HA, which acts

Inorganic ChemistryChemistry

Research Areas

Electrical and Electronic EngineeringMaterials ChemistryBiomedical EngineeringRenewable Energy, Sustainability and the EnvironmentInorganic ChemistryOrganic Chemistry

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