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Changshin Jo

Pohang University of Science and Technology · 工学

研究室紹介

Professor Changshin Jo's research lab specializes in the design and synthesis of advanced nanomaterials for energy storage applications, with a primary focus on next-generation batteries. The lab develops novel nanostructured anode materials—particularly titanium- and tungsten-based oxides—engineered with hierarchical porosity and mesoporous architectures to enhance ion diffusion, structural stability, and electrochemical performance. Key research directions include the rational design of functional separators, solid electrolyte interphase (SEI) engineering for alkali metal anodes, and pseudocapacitive charge storage mechanisms in metal oxides. The lab emphasizes scalable synthesis methods and structure-property relationships to advance high-energy-density, high-safety batteries.

nanomaterialsenergy storagebattery anodesmesoporous oxidessodium metal batteries

Research Overview

Papers
144
Total Citations
7,898
Papers (5y)
61
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
61total
2022
2023
2024
2025
2026
Citations per year (5y)
767total
20222023202420252026

Selected Papers

15
1
Article|172 citations·2014
Block Copolymer Directed Ordered Mesostructured TiNb2O7 Multimetallic Oxide Constructed of Nanocrystals as High Power Li-Ion Battery Anodes
Changshin Jo, Youngsik Kim, Jongkook Hwang, Jongmin Shim, Jinyoung Chun, Jinwoo Lee
SJR Q1Chemistry of Materials

In order to achieve high-power and -energy anodes operating above 1.0 V (vs Li/Li + ), titanium-based materials have been investigated for a long time. However, theoretically low lithium charge capacities of titanium-anodes have required new types of high-capacity anode materials. As a candidate, TiNb 2 O 7 has attracted much attention due to the high theoretical capacity of 387.6 mA h g –1 . However, the high formation temperature of the TiNb 2 O 7 phase resulted in large-sized TiNb 2 O 7 cryst

Electrical and Electronic EngineeringEngineering
2
Article|162 citations·2013
Block‐Copolymer‐Assisted One‐Pot Synthesis of Ordered Mesoporous WO3−x/Carbon Nanocomposites as High‐Rate‐Performance Electrodes for Pseudocapacitors
Changshin Jo, Jongkook Hwang, Hannah Song, Anh Ha Dao, Yong‐Tae Kim, Sang Hyub Lee, Seok Won Hong, Songhun Yoon, Jinwoo Lee
SJR Q1Advanced Functional Materials

Abstract An ordered mesoporous tungsten‐oxide/carbon (denoted as m‐WO 3− x ‐C‐s) nanocomposite is synthesized using a simple one‐pot method using polystyrene‐ block ‐poly(ethylene oxide) (PS‐ b ‐PEO) as a structure‐directing agent. The hydrophilic PEO block interacts with the carbon and tungsten precursors (resol polymer and WCl 6 ), and the PS block is converted to pores after heating at 700 °C under a nitrogen flow. The m‐WO 3− x ‐C‐s nanocomposite has a high Brunauer–Emmett–Teller (BET) surfa

Electronic, Optical and Magnetic MaterialsMaterials Science
3
Review|151 citations·2020
A Review of Functional Separators for Lithium Metal Battery Applications
Jooyoung Jang, Jiwoong Oh, Hyebin Jeong, Woosuk Kang, Changshin Jo
SJR Q2MaterialsOA

Lithium metal batteries are considered "rough diamonds" in electrochemical energy storage systems. Li-metal anodes have the versatile advantages of high theoretical capacity, low density, and low reaction potential, making them feasible candidates for next-generation battery applications. However, unsolved problems, such as dendritic growths, high reactivity of Li-metal, low Coulombic efficiency, and safety hazards, still exist and hamper the improvement of cell performance and reliability. The

Electrical and Electronic EngineeringEngineering
4
Article|118 citations·2011
Investigation of Pseudocapacitive Charge-Storage Behavior in Highly Conductive Ordered Mesoporous Tungsten Oxide Electrodes
Changshin Jo, Ilkyu Hwang, Jinwoo Lee, Chul Wee Lee, Songhun Yoon
SJR Q1The Journal of Physical Chemistry C

Herein, a pseudocapacitive charging behavior of highly conductive ordered mesoporous tungsten oxide (m-WO 3-X ) is investigated. For this purpose, various electrochemical analysis methods such as cyclic voltammetry (CV), galvanostatic charge–discharge experiment and electrochemical impedance spectroscopy (EIS) were employed. From CV experiment, a relationship analysis between voltammetric charge and scan rate resulted in total (67 C g –1 ), outer (61 C g –1 ) and inner charge (6 C g –1 ), which

Electronic, Optical and Magnetic MaterialsMaterials Science
5
Review|111 citations·2020
A review on recent approaches for designing the SEI layer on sodium metal anodes
Jisung Lee, Jisung Lee, Jinuk Kim, Seongseop Kim, Changshin Jo, Jinwoo Lee, Jinwoo Lee
SJR Q1Materials AdvancesOA

This review comprehensively summarizes the key challenges of sodium metal anodes and the recent progress in engineering the SEI layer for high energy density SMBs.

Electrical and Electronic EngineeringEngineering
6
Review|105 citations·2022
A review on current collector coating methods for next-generation batteries
Hyebin Jeong, Jooyoung Jang, Changshin Jo
SJR Q1Chemical Engineering Journal
Electrical and Electronic EngineeringEngineering
7
Article|87 citations·2017
Multiscale Phase Separations for Hierarchically Ordered Macro/Mesostructured Metal Oxides
Changshin Jo, Jongkook Hwang, Won‐Gwang Lim, Jun Lim, Kahyun Hur, Jinwoo Lee
SJR Q1Advanced Materials

Porous architectures play an important role in various applications of inorganic materials. Several attempts to develop mesoporous materials with controlled macrostructures have been reported, but they usually require complicated multiple-step procedures, which limits their versatility and suitability for mass production. Here, a simple approach for controlling the macrostructures of mesoporous materials, without templates for the macropores, is reported. The controlled solvent evaporation induc

Materials ChemistryMaterials Science
8
Article|81 citations·2021
Biomass‐Derived P, N Self‐Doped Hard Carbon as Bifunctional Oxygen Electrocatalyst and Anode Material for Seawater Batteries
Jioh Kim, Jinkyu Park, Jisung Lee, Jisung Lee, Won‐Gwang Lim, Changshin Jo, Jinwoo Lee, Jinwoo Lee
SJR Q1Advanced Functional Materials

Abstract Owing to the demand for low‐cost batteries with safety, Na‐seawater batteries (SWBs) have received considerable attention as a new energy storage system (ESS). In SWB, it is necessary to use an advanced oxygen evolution/reduction reaction (OER/ORR) catalyst for high energy efficiency (EE) in the cathode and a good sodium storage material for a highly reversible capacity in the anode part. In this study, nanostructured and N and P dual‐doped hard carbon is fabricated by simply carbonizin

Electrical and Electronic EngineeringEngineering
9
Article|77 citations·2019
Continuous-Flow Synthesis of Carbon-Coated Silicon/Iron Silicide Secondary Particles for Li-Ion Batteries
Changshin Jo, Alexander S. Groombridge, Jean de La Verpilliere, Jung Tae Lee, Yeonguk Son, Hsin‐Ling Liang, Adam Boies, Michaël De Volder
SJR Q1ACS NanoOA

The development of better Li-ion battery (LIB) electrodes requires an orchestrated effort to improve the active materials as well as the electron and ion transport in the electrode. In this paper, iron silicide is studied as an anode material for LIBs because of its higher conductivity and lower volume expansion compared to pure Si particles. In addition, carbon nanotubes (CNTs) can be synthesized from the surface of iron-silicides using a continuous flow coating process where precursors are fir

Electrical and Electronic EngineeringEngineering
10
Article|75 citations·2022
Designing fluorine-free electrolytes for stable sodium metal anodes and high-power seawater batteries via SEI reconstruction
Jinuk Kim, Jioh Kim, Jooyoung Jeong, Jiwon Park, Cheol‐Young Park, Sewon Park, Shin Gwon Lim, Kyu Tae Lee, Nam‐Soon Choi, Hye Ryung Byon, Changshin Jo, Jinwoo Lee
SJR Q1Energy & Environmental Science

F-free, cost-effective 1 M NaBH 4 /glyme electrolytes induce SEI reconstruction, which converts the native oxide layer on sodium metal to a NaH-based SEI layer. With 1 M NaBH 4 /DEGDME, we achieved long-term cycling, high-power seawater batteries.

Electrical and Electronic EngineeringEngineering
11
Article|74 citations·2015
Structural Effect on Electrochemical Performance of Ordered Porous Carbon Electrodes for Na-Ion Batteries
Changshin Jo, Yuwon Park, Jooyoung Jeong, Kyu Tae Lee, Jinwoo Lee
SJR Q1ACS Applied Materials & Interfaces

Ordered meso- or macro-porous carbons (OMCs) were applied as anodes in Na ion battery (NIB) systems. Three different block copolymers (BCPs) enabled us to control the pore sizes (6, 33, and 60 nm) while maintaining the same 2-D hexagonal structure. To exclude other effects, the factors including precursors, particle sizes, and degrees of graphitization were controlled. The structures of OMCs were characterized by nitrogen physisorption, Raman spectroscopy, X-ray analyses (XRD and SAXS), and micr

Electrical and Electronic EngineeringEngineering
12
Article|70 citations·2020
Mesoporous carbon host material for stable lithium metal anode
Jooyoung Jeong, Jinyoung Chun, Won‐Gwang Lim, Won Bae Kim, Changshin Jo, Jinwoo Lee
SJR Q1Nanoscale

Lithium (Li) metal is a promising anode material for next-generation batteries because of its low standard reduction potential (-3.04 V vs. SHE) and high specific capacity (3860 mA h g-1). However, it is still challenging to directly use Li metal as anode material in commercial batteries because of unstable Li dendrite formation and accumulated solid-electrolyte interphase. Possible methods that can suppress the unwanted formation of Li dendrites are (i) by increasing the electrode surface area

Electrical and Electronic EngineeringEngineering
13
Article|63 citations·2023
Recent progress in block copolymer soft-template-assisted synthesis of versatile mesoporous materials for energy storage systems
Keon‐Woo Kim, Bomi Park, Jun Kim, Jun Kim, Changshin Jo, Jin Kon Kim, Jin Kon Kim
SJR Q1Journal of Materials Chemistry AOA

Various mesoporous materials synthesized from block copolymer soft-template-assisted methods and their application in energy storage systems.

Electronic, Optical and Magnetic MaterialsMaterials Science
14
Article|50 citations·2021
Recent advances in the synthesis of mesoporous materials and their application to lithium-ion batteries and hybrid supercapacitors
Eunho Lim, Jinyoung Chun, Changshin Jo, Jongkook Hwang
SJR Q2Korean Journal of Chemical Engineering
Electronic, Optical and Magnetic MaterialsMaterials Science
15
Review|43 citations·2023
Block Copolymer-Directed Facile Synthesis of N-Doped Mesoporous Graphitic Carbon for Reliable, High-Performance Zn Ion Hybrid Supercapacitor
Keon‐Woo Kim, Bomi Park, Jun Kim, Jun Kim, Hyunho Seok, Taesung Kim, Changshin Jo, Jin Kon Kim, Jin Kon Kim
SJR Q1ACS Applied Materials & Interfaces

Ordered mesoporous carbons (OMCs) are promising materials for cathode materials of a Zn ion hybrid capacitor (Zn HC) due to their high surface area and interconnected porous structure. Graphitization of the framework and nitrogen doping have been used to improve the energy storage performance of the OMCs by enhancing electrical conductivity, pseudocapacitive reaction sites, and surface affinity toward aqueous electrolytes. Thus, when both methods are simultaneously implemented to the OMCs, the Z

Electronic, Optical and Magnetic MaterialsMaterials Science

Research Areas

Electrical and Electronic EngineeringElectronic, Optical and Magnetic MaterialsMaterials ChemistryRenewable Energy, Sustainability and the EnvironmentPolymers and PlasticsInorganic Chemistry

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