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Seung Woo Lee

Pohang University of Science and Technology · Engineering

About the Lab

Professor Seung Woo Lee's research lab specializes in advanced materials for sustainable energy and environmental applications, with a strong focus on electrocatalysis and energy storage systems. The lab investigates novel nanomaterials—particularly carbon nanotubes and transition metal oxides—for use in sodium-ion and sodium-metal batteries, aiming to overcome challenges related to stability and efficiency. A key research direction involves the development of selective electrocatalysts for nitrogen fixation and nitrate reduction, offering pathways to carbon-free fertilizer production. The lab also explores fundamental electrochemical processes in functional thin films and nanostructured electrodes to enable high-performance energy devices.

electrocatalysisenergy storagenanomaterialssodium-ion batteriesnitrogen fixation

Research Overview

Papers
410
Total Citations
17,947
Papers (5y)
111
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
111total
2021
2022
2023
2024
2025
Citations per year (5y)
3,820total
20212022202320242025

Selected Papers

15
1
Review|890 citations·2019
Sodium Metal Anodes: Emerging Solutions to Dendrite Growth
Byeongyong Lee, Eunsu Paek, David Mitlin, Seung Woo Lee
SJR Q1Chemical Reviews

This comprehensive Review focuses on the key challenges and recent progress regarding sodium-metal anodes employed in sodium-metal batteries (SMBs). The metal anode is the essential component of emerging energy storage systems such as sodium sulfur and sodium selenium, which are discussed as example full-cell applications. We begin with a description of the differences in the chemical and physical properties of Na metal versus the oft-studied Li metal, and a corresponding discussion regarding th

Electrical and Electronic EngineeringEngineering
2
Article|868 citations·2010
High-Power Lithium Batteries from Functionalized Carbon Nanotube Electrodes
Seung Woo Lee, Naoaki Yabuuchi, Betar M. Gallant, Paula T. Hammond, Yang Shao‐Horn
ECS Meeting AbstractsOA

Abstract not Available.

Electrical and Electronic EngineeringEngineering
3
Article|757 citations·2022
Elastomeric electrolytes for high-energy solid-state lithium batteries
Michael J. Lee, Junghun Han, Kyungbin Lee, Young Jun Lee, Byoung Gak Kim, Kyu‐Nam Jung, Bumjoon J. Kim, Seung Woo Lee, Bumjoon J. Kim, Seung Woo Lee
SJR Q1Nature
Electrical and Electronic EngineeringEngineering
4
Article|727 citations·2010
Carbon Nanotube/Manganese Oxide Ultrathin Film Electrodes for Electrochemical Capacitors
Seung Woo Lee, Hak Jun Kim, Shuo Chen, Paula T. Hammond, Yang Shao‐Horn
SJR Q1ACS Nano

Multiwall carbon nanotube (MWNT)/manganese oxide (MnO2) nanocomposite ultrathin film electrodes have been created via redox deposition of MnO2 on layer-by-layer (LbL)-assembled MWNT films. We demonstrate that these LbL-assembled MWNT (LbL-MWNT)/MnO2 thin films consist of a uniform coating of nanosized MnO2 on the MWNT network structure using SEM and TEM, which is a promising structure for electrochemical capacitor applications. LbL-MWNT/MnO2 electrodes yield a significantly higher volumetric cap

Electronic, Optical and Magnetic MaterialsMaterials Science
5
Article|652 citations·2008
Layer-by-Layer Assembly of All Carbon Nanotube Ultrathin Films for Electrochemical Applications
Seung Woo Lee, Byeong‐Su Kim, Shuo Chen, Yang Shao‐Horn, Paula T. Hammond
SJR Q1Journal of the American Chemical Society

All multiwall carbon nanotube (MWNT) thin films are created by layer-by-layer (LBL) assembly of surface functionalized MWNTs. Negatively and positively charged MWNTs were prepared by surface functionalization, allowing the incorporation of MWNTs into highly tunable thin films via the LBL technique. The pH dependent surface charge on the MWNTs gives this system the unique characteristics of LBL assembly of weak polyelectrolytes, controlling thickness and morphology with assembly pH conditions. We

Polymers and PlasticsMaterials Science
6
Article|507 citations·2021
Ammonia and Nitric Acid Demands for Fertilizer Use in 2050
Jeonghoon Lim, Carlos Iglesias Fernández, Seung Woo Lee, Marta C. Hatzell
SJR Q1ACS Energy Letters

Access to nitrogen-based fertilizers is critical to maximize agricultural yield, as nitrogen is the most common rate-limiting nutrient. Nearly all nitrogen-based fertilizers rely on ammonia and nitric acid as feedstocks, and thus the demand for these chemicals is heavily dependent on the global population and food demand. Over the next three decades, the global population will continue to dictate the market size and value for ammonia and nitric acid, which consequently will have a significant im

CatalysisChemical Engineering
7
Article|414 citations·2021
Structure Sensitivity of Pd Facets for Enhanced Electrochemical Nitrate Reduction to Ammonia
Jeonghoon Lim, Chun-Yen Liu, Jinho Park, Yu‐Hsuan Liu, Thomas P. Senftle, Seung Woo Lee, Marta C. Hatzell
SJR Q1ACS Catalysis

The design of electrocatalysts capable of selectively reducing nitrate to ammonia is gaining interest as a means of transforming waste into fertilizers. However, most prior investigations of prototypical electrocatalysts, such as polycrystalline Pd and Pt, have focused on unraveling the mechanisms responsible for the selective reduction of nitrate to nitrogen gas. Such polycrystalline noble metals demonstrate notoriously low activity for nitrate reduction (nitrate to nitrite) and high activity f

CatalysisChemical Engineering
8
Article|407 citations·2017
Flexible supercapacitor electrodes based on real metal-like cellulose papers
Yongmin Ko, Minseong Kwon, Wan Ki Bae, Byeongyong Lee, Seung Woo Lee, Jinhan Cho
SJR Q1Nature CommunicationsOA

Abstract The effective implantation of conductive and charge storage materials into flexible frames has been strongly demanded for the development of flexible supercapacitors. Here, we introduce metallic cellulose paper-based supercapacitor electrodes with excellent energy storage performance by minimizing the contact resistance between neighboring metal and/or metal oxide nanoparticles using an assembly approach, called ligand-mediated layer-by-layer assembly. This approach can convert the insu

Electronic, Optical and Magnetic MaterialsMaterials Science
9
Article|383 citations·2018
Emergent Pseudocapacitance of 2D Nanomaterials
Xu Yu, Sol Yun, Jeong Yeon, Pallab Bhattacharya, Libin Wang, Seung Woo Lee, Xianluo Hu, Ho Seok Park
SJR Q1Advanced Energy Materials

Abstract Two dimensional (2D) nanomaterials are very attractive due to their unique structural and surface features for energy storage applications. Motivated by the recent pioneering works demonstrating “the emergent pseudocapacitance of 2D nanomaterials,” the energy storage and nanoscience communities could revisit bulk layered materials though state‐of‐the‐art nanotechnology such as nanostructuring, nanoarchitecturing, and compositional control. However, no review has focused on the fundament

Electronic, Optical and Magnetic MaterialsMaterials Science
10
Article|366 citations·2011
Nanostructured carbon-based electrodes: bridging the gap between thin-film lithium-ion batteries and electrochemical capacitors
Seung Woo Lee, Betar M. Gallant, Hye Ryung Byon, Paula T. Hammond, Yang Shao‐Horn
SJR Q1Energy & Environmental Science

The fast evolution of portable electronic devices and micro-electro-mechanical systems (MEMS) requires multi-functional microscale energy sources that have high power, high energy, long cycle life, and the adaptability to various substrates. Nanostructured thin-film lithium-ion batteries and electrochemical capacitors (ECs) are among the most promising energy storage devices that can meet these demands. This perspective presents an overview of recent progresses and challenges associated with the

Electronic, Optical and Magnetic MaterialsMaterials Science
11
Article|315 citations·2012
The Nature of Lithium Battery Materials under Oxygen Evolution Reaction Conditions
Seung Woo Lee, Christopher E. Carlton, Marcel Risch, Yogesh Surendranath, Shuo Chen, Sho Furutsuki, Atsuo Yamada, Daniel G. Nocera, Yang Shao‐Horn
SJR Q1Journal of the American Chemical Society

Transition-metal oxide and phosphate materials, commonly used for lithium battery devices, are active as oxygen evolution reaction (OER) catalysts under alkaline and neutral solution conditions. Electrodes composed of LiCoO(2) and LiCoPO(4) exhibit progressive deactivation and activation for OER catalysis, respectively, upon potential cycling at neutral pH. The deactivation of LiCoO(2) and activation of LiCoPO(4) are coincident with changes in surface morphology and composition giving rise to sp

Renewable Energy, Sustainability and the EnvironmentEnergy
12
Article|309 citations·2016
Self-polymerized dopamine as an organic cathode for Li- and Na-ion batteries
Tianyuan Liu, Ki Chul Kim, Byeongyong Lee, Zhongming Chen, Suguru Noda, Seung Soon Jang, Seung Woo Lee
SJR Q1Energy & Environmental ScienceOA

Redox-active, self-polymerized dopamine shows promise as organic cathode materials for Li- and Na-ion batteries.

Electrical and Electronic EngineeringEngineering
13
Article|236 citations·2016
First-Principles Density Functional Theory Modeling of Li Binding: Thermodynamics and Redox Properties of Quinone Derivatives for Lithium-Ion Batteries
Ki Chul Kim, Tianyuan Liu, Seung Woo Lee, Seung Soon Jang
SJR Q1Journal of the American Chemical Society

The Li-binding thermodynamics and redox potentials of seven different quinone derivatives are investigated to determine their suitability as positive electrode materials for lithium-ion batteries. First, using density functional theory (DFT) calculations on the interactions between the quinone derivatives and Li atoms, we find that the Li atoms primarily bind with the carbonyl groups in the test molecules. Next, we observed that the redox properties of the quinone derivatives can be tuned in the

Electrical and Electronic EngineeringEngineering
14
Article|224 citations·2022
A 3D Hierarchical Host with Enhanced Sodiophilicity Enabling Anode‐Free Sodium‐Metal Batteries
Kyungbin Lee, Young Jun Lee, Michael J. Lee, Junghun Han, Jeonghoon Lim, Kun Ryu, Hana Yoon, Byung‐Hyun Kim, Bumjoon J. Kim, Seung Woo Lee
SJR Q1Advanced Materials

Abstract Sodium‐metal batteries (SMBs) are considered as a compliment to lithium‐metal batteries for next‐generation high‐energy batteries because of their low cost and the abundance of sodium (Na). Herein, a 3D nanostructured porous carbon particle containing carbon‐shell‐coated Fe nanoparticles (PC‐CFe) is employed as a highly reversible Na‐metal host. PC‐CFe has a unique 3D hierarchy based on sub‐micrometer‐sized carbon particles, ordered open channels, and evenly distributed carbon‐coated Fe

Electrical and Electronic EngineeringEngineering
15
Article|203 citations·2019
Oxygen‐Vacancy‐Introduced BaSnO3−δ Photoanodes with Tunable Band Structures for Efficient Solar‐Driven Water Splitting
Myeongjin Kim, Byeongyong Lee, Hyun Ju, Jin Young Kim, Jin Young Kim, Jooheon Kim, Jooheon Kim, Seung Woo Lee
SJR Q1Advanced Materials

Abstract To achieve excellent photoelectrochemical water‐splitting activity, photoanode materials with high light absorption and good charge‐separation efficiency are essential. One effective strategy for the production of materials satisfying these requirements is to adjust their band structure and corresponding bandgap energy by introducing oxygen vacancies. A simple chemical reduction method that can systematically generate oxygen vacancies in barium stannate (BaSnO 3 (BSO)) crystal is introd

Materials ChemistryMaterials Science

Research Areas

Electrical and Electronic EngineeringRenewable Energy, Sustainability and the EnvironmentElectronic, Optical and Magnetic MaterialsBiomedical EngineeringPolymers and PlasticsMaterials Chemistry

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