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Young Soo Yun

Korea University · Engineering

About the Lab

Professor Young Soo Yun's research lab specializes in the design and synthesis of advanced carbon-based nanomaterials for sustainable energy applications, with a primary focus on energy storage devices such as supercapacitors and rechargeable batteries. The lab emphasizes the development of hierarchical porous carbons, heteroatom-doped carbon nanostructures, and 3D-architected electrodes derived from renewable or waste-based precursors like silk fibroin and coffee grounds. Key research directions include understanding ion storage mechanisms in hard carbon anodes, optimizing interfacial engineering for alkali-metal batteries, and correlating nanostructure with electrochemical performance through advanced spectroscopic and electrochemical characterization.

carbon nanomaterialsenergy storagesupercapacitorssodium-ion batterieshierarchical porosity

Research Overview

Papers
171
Total Citations
5,516
Papers (5y)
26
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
26total
2021
2022
2023
2024
2025
Citations per year (5y)
710total
20212022202320242025

Selected Papers

15
1
Article|519 citations·2013
Microporous Carbon Nanoplates from Regenerated Silk Proteins for Supercapacitors
Young Soo Yun, Se Youn Cho, Jinyong Shim, Byung Hoon Kim, Sung‐Jin Chang, Seung Jae Baek, Yun Suk Huh, Yongsug Tak, Yung Woo Park, Sungjin Park, Hyoung‐Joon Jin
SJR Q1Advanced MaterialsOA

Novel carbon-based microporous nanoplates containing numerous heteroatoms (H-CMNs) are fabricated from regenerated silk fibroin by the carbonization and activation of KOH. The H-CMNs exhibit superior electrochemical performance, displaying a specific capacitance of 264 F/g in aqueous electrolytes, a specific energy of 133 Wh/kg, a specific power of 217 kW/kg, and a stable cycle life over 10000 cycles.

Electronic, Optical and Magnetic MaterialsMaterials Science
2
Article|297 citations·2015
Hierarchically Porous Carbon Nanosheets from Waste Coffee Grounds for Supercapacitors
Young Soo Yun, Min Hong Park, Sung Ju Hong, Min Eui Lee, Yung Woo Park, Hyoung‐Joon Jin
SJR Q1ACS Applied Materials & Interfaces

The nanostructure design of porous carbon-based electrode materials is key to improving the electrochemical performance of supercapacitors. In this study, hierarchically porous carbon nanosheets (HP-CNSs) were fabricated using waste coffee grounds by in situ carbonization and activation processes using KOH. Despite the simple synthesis process, the HP-CNSs had a high aspect ratio nanostructure (∼20 nm thickness to several micrometers in lateral size), a high specific surface area of 1945.7 m(2)

Electronic, Optical and Magnetic MaterialsMaterials Science
3
Article|237 citations·2014
Effects of sulfur doping on graphene-based nanosheets for use as anode materials in lithium-ion batteries
Young Soo Yun, Viet‐Duc Le, Haegyeom Kim, Sung‐Jin Chang, Seung Jae Baek, Sungjin Park, Byung Hoon Kim, Yong‐Hyun Kim, Kisuk Kang, Hyoung‐Joon Jin
SJR Q1Journal of Power Sources
Electrical and Electronic EngineeringEngineering
4
Article|225 citations·2023
Revisiting Lithium‐ and Sodium‐Ion Storage in Hard Carbon Anodes
Hoseong Kim, Jong Chan Hyun, Do‐Hoon Kim, Jin Hwan Kwak, Jin Bae Lee, Joon Ha Moon, Jaewon Choi, Hee‐Dae Lim, Hee‐Dae Lim, Seung Jae Yang, Hyeong Min Jin, Hyeong Min Jin
SJR Q1Advanced Materials

The galvanostatic lithiation/sodiation voltage profiles of hard carbon anodes are simple, with a sloping drop followed by a plateau. However, a precise understanding of the corresponding redox sites and storage mechanisms is still elusive, which hinders further development in commercial applications. Here, a comprehensive comparison of the lithium- and sodium-ion storage behaviors of hard carbon is conducted, yielding the following key findings: 1) the sloping voltage section is presented by the

Electrical and Electronic EngineeringEngineering
5
Article|139 citations·2015
Sodium‐Ion Storage in Pyroprotein‐Based Carbon Nanoplates
Young Soo Yun, Kyu‐Young Park, Byoungju Lee, Se Youn Cho, Young‐Uk Park, Sung Ju Hong, Byung Hoon Kim, Hyeokjo Gwon, Haegyeom Kim, Sungho Lee, Y. W. Park, Hyoung‐Joon Jin
SJR Q1Advanced Materials

Pyroprotein-based carbon nanoplates are fabricated from self-assembled silk proteins as a versatile platform to examine sodium-ion storage characteristics in various carbon environments. It is found that, depending on the local carbon structure, sodium ions are stored via chemi-/physisorption, insertion, or nanoclustering of metallic sodium.

Electrical and Electronic EngineeringEngineering
6
Article|102 citations·2017
Macroporous Catalytic Carbon Nanotemplates for Sodium Metal Anodes
Hyeon Ji Yoon, Na Rae Kim, Hyoung‐Joon Jin, Young Soo Yun
SJR Q1Advanced Energy Materials

Abstract Because of its remarkably high theoretical capacity and favorable redox voltage (−2.71 V vs the standard hydrogen electrode), Na is a promising anode material for Na ion batteries. In this study, macroporous catalytic carbon nanotemplates (MC‐CNTs) based on nanoweb‐structured carbon nanofibers with various carbon microstructures are prepared from microbe‐derived cellulose via simple heating at 800 or 2400 °C. MC‐CNTs prepared at 800 °C have amorphous carbon structures with numerous topo

Electrical and Electronic EngineeringEngineering
7
Article|87 citations·2013
Hierarchically porous carbon nanofibers containing numerous heteroatoms for supercapacitors
Young Soo Yun, Changbin Im, Hyun Ho Park, Imgon Hwang, Yongsug Tak, Hyoung‐Joon Jin
SJR Q1Journal of Power Sources
Electronic, Optical and Magnetic MaterialsMaterials Science
8
Article|85 citations·2015
Crumpled graphene paper for high power sodium battery anode
Young Soo Yun, Young Uk Park, Sung-Jin Chang, Byung Hoon Kim, Jaewon Choi, Junjie Wang, Ding Zhang, Paul V. Braun, Hyoung‐Joon Jin, Kisuk Kang
SJR Q1Carbon
Electrical and Electronic EngineeringEngineering
9
Article|82 citations·2016
Long-Lasting Nb2O5-Based Nanocomposite Materials for Li-Ion Storage
Min Yeong Song, Na Rae Kim, Hyeon Ji Yoon, Se Youn Cho, Hyoung‐Joon Jin, Young Soo Yun
SJR Q1ACS Applied Materials & Interfaces

Advanced nanostructured hybrid materials can help us overcome the electrochemical performance limitations of current energy storage devices. In this study, three-dimensional porous carbon nanowebs (3D-CNWs) with numerous included orthorhombic Nb 2 O 5 (T-Nb 2 O 5 ) nanoparticles were fabricated using a microbe-derived nanostructure. The 3D-CNW/T-Nb 2 O 5 nanocomposites showed an exceptionally stable long-term cycling performance over 70 000 cycles, a high reversible capacity of ∼125 mA h g –1, a

Electrical and Electronic EngineeringEngineering
10
Article|77 citations·2014
High-performance supercapacitors based on defect-engineered carbon nanotubes
Young Soo Yun, Gabin Yoon, Kisuk Kang, Hyoung‐Joon Jin
SJR Q1Carbon
Electronic, Optical and Magnetic MaterialsMaterials Science
11
Article|74 citations·2012
Pseudocapacitive Effects of N-Doped Carbon Nanotube Electrodes in Supercapacitors
Young Soo Yun, Hyun Ho Park, Hyoung‐Joon Jin
SJR Q2MaterialsOA

Nitrogen- and micropore-containing carbon nanotubes (NMCNTs) were prepared by carbonization of nitrogen-enriched, polymer-coated carbon nanotubes (CNTs), and the electrochemical performances of the NMCNTs with different heteroatom contents were investigated. NMCNTs-700 containing 9.1 wt% nitrogen atoms had a capacitance of 190.8 F/g, which was much higher than that of pristine CNTs (48.4 F/g), despite the similar surface area of the two CNTs, and was also higher than that of activated CNTs (151.

Electronic, Optical and Magnetic MaterialsMaterials Science
12
Article|72 citations·2012
Transparent conducting films based on graphene oxide/silver nanowire hybrids with high flexibility
Young Soo Yun, Do Hyeong Kim, Bona Kim, Hyun Ho Park, Hyoung‐Joon Jin
SJR Q1Synthetic Metals
Electrical and Electronic EngineeringEngineering
13
Article|72 citations·2014
Ultra‐Thin Hollow Carbon Nanospheres for Pseudocapacitive Sodium‐Ion Storage
Young Soo Yun, Se Youn Cho, Haegyeom Kim, Hyoung‐Joon Jin, Kisuk Kang
SJR Q2ChemElectroChem

Abstract Ultra‐thin hollow carbon nanospheres (UTH‐CNs) are fabricated for use as anodes of asymmetric sodium ion pseudocapacitors. The ∼3 nm thick amorphous carbon walls obtained from regenerated silk proteins as a template exhibit a well‐defined porous structure suitable for reversible sodium‐ion storage. The UTH‐CNs show remarkable electrochemical activity with sodium via a pseudocapacitive reaction, delivering a large reversible capacity as well as superior rate performance for more than 100

Electronic, Optical and Magnetic MaterialsMaterials Science
14
Article|71 citations·2017
Conversion Reaction of Copper Sulfide Based Nanohybrids for Sodium-Ion Batteries
Na Rae Kim, Jaewon Choi, Hyeon Ji Yoon, Min Eui Lee, Seung Uk Son, Hyoung‐Joon Jin, Young Soo Yun
SJR Q1ACS Sustainable Chemistry & Engineering

Intercalation-based anode materials for Na-ion batteries show relatively unfavorable electrochemical performances compared with those of Li-ion batteries because of the larger and heavier Na ion, as well as its higher electrode potential. In contrast, conversion-reaction-based anode materials have great potential for use in Na-ion batteries. In this study, copper sulfide nanodisks (CuS-NDs) were fabricated by a simple low-temperature reaction and applied as the anode materials for Na-ion batteri

Electrical and Electronic EngineeringEngineering
15
Article|69 citations·2019
Anode‐Free Sodium Metal Batteries Based on Nanohybrid Core–Shell Templates
Min Eui Lee, Seunggon Lee, Jaewon Choi, Hyoung‐Joon Jin, Seungyong Han, Young Soo Yun
SJR Q1Small

Abstract Anode‐free sodium metal batteries (AF‐SMBs) can deliver high energy and enormous power, but their cycle lives are still insufficient for them to be practical as a power source in modern electronic devices and/or grid systems. In this study, a nanohybrid template based on high aspect‐ratio silver nanofibers and nitrogen‐rich carbon thin layers as a core–shell structure is designed to improve the Coulombic efficiency (CE) and cycling performance of AF‐SMBs. The catalytic nanohybrid templa

Electrical and Electronic EngineeringEngineering

Research Areas

Electrical and Electronic EngineeringElectronic, Optical and Magnetic MaterialsMaterials ChemistryPathology and Forensic MedicineOphthalmologyBiomaterials

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