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Dae Woo Kim

Yonsei University · Engineering

About the Lab

Professor Dae Woo Kim's research lab specializes in the design and fabrication of advanced two-dimensional nanomaterials and functional membranes for next-generation separation technologies. The lab focuses on graphene-based materials—such as graphene oxide, reduced graphene oxide, and nanoporous graphene—engineered for high-performance applications in water purification, organic solvent nanofiltration, and molecular separation. Key research directions include scalable membrane fabrication, precise pore engineering, and surface functionalization to enhance permeability, selectivity, and stability under harsh conditions. The lab also explores energy storage applications using tailored carbon nanostructures, particularly for supercapacitors.

graphene membranesnanoporous graphenemolecular separationscalable fabricationsupercapacitors

Research Overview

Papers
261
Total Citations
8,028
Papers (5y)
109
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
109total
2022
2023
2024
2025
2026
Citations per year (5y)
1,782total
20222023202420252026

Selected Papers

15
1
Article|235 citations·2011
Direct visualization of large-area graphene domains and boundaries by optical birefringency
Dae Woo Kim, Yun Ho Kim, Hyeon Su Jeong, Hee‐Tae Jung
SJR Q1Nature Nanotechnology
Materials ChemistryMaterials Science
2
Article|147 citations·2016
Enhanced Stability of Laminated Graphene Oxide Membranes for Nanofiltration via Interstitial Amide Bonding
Yoon Tae Nam, Jung‐Hoon Choi, Kyoung Min Kang, Dae Woo Kim, Hee‐Tae Jung
SJR Q1ACS Applied Materials & Interfaces

Laminated graphene oxide (GO) has promising use as a membrane because of its high permeance, chemical and mechanical stability, as well as the molecular sieving effect of its interlayers. However, the hydrophilic surface of GO, which is highly decorated with oxygen groups, easily induces delamination of stacked GO films in aqueous media, thereby limiting the practical application. To stabilize GO films in aqueous media, we functionalized a polymer support with branched polyethylene-imine (BPEI).

Water Science and TechnologyEnvironmental Science
3
Article|121 citations·2023
Microwave-assisted design of nanoporous graphene membrane for ultrafast and switchable organic solvent nanofiltration
Junhyeok Kang, Yeongnam Ko, Jeong Pil Kim, Ju Yeon Kim, Jiwon Kim, Ohchan Kwon, Ki Chul Kim, Dae Woo Kim
SJR Q1Nature CommunicationsOA

Abstract Layered two-dimensional materials can potentially be utilized for organic solvent nanofiltration (OSN) membrane fabrication owing to their precise molecular sieving by the interlayer structure and excellent stability in harsh conditions. Nevertheless, the extensive tortuosity of nanochannels and bulky solvent molecules impede rapid permeability. Herein, nanoporous graphene (NG) with a high density of sp 2 carbon domain was synthesized via sequential thermal pore activation of graphene o

Water Science and TechnologyEnvironmental Science
4
Review|112 citations·2021
Fabrication Techniques for Graphene Oxide-Based Molecular Separation Membranes: Towards Industrial Application
Ohchan Kwon, Yunkyu Choi, Eunji Choi, Minsu Kim, Yun Chul Woo, Dae Woo Kim
SJR Q1NanomaterialsOA

Graphene oxide (GO) has been a prized material for fabricating separation membranes due to its immense potential and unique chemistry. Despite the academic focus on GO, the adoption of GO membranes in industry remains elusive. One of the challenges at hand for commercializing GO membranes lies with large-scale production techniques. Fortunately, emerging studies have acknowledged this issue, where many have aimed to deliver insights into scalable approaches showing potential to be employed in th

Water Science and TechnologyEnvironmental Science
5
Article|103 citations·2019
Continuous ZIF-8/reduced graphene oxide nanocoating for ultrafast oil/water separation
Dae Woo Kim, Dae Woo Kim, Kiwon Eum, Hanim Kim, Dae‐Ok Kim, Dae‐Ok Kim, Matheus Dorneles de Mello, Kangho Park, Michael Tsapatsis
SJR Q1Chemical Engineering Journal
Surfaces, Coatings and FilmsMaterials Science
6
Review|97 citations·2021
A comprehensive review of MXene-based water-treatment membranes and technologies: Recent progress and perspectives
Ohchan Kwon, Yunkyu Choi, Junhyeok Kang, Ji Hoon Kim, Eunji Choi, Yun Chul Woo, Dae Woo Kim
SJR Q1Desalination
Materials ChemistryMaterials Science
7
Article|91 citations·2022
High–aspect ratio zeolitic imidazolate framework (ZIF) nanoplates for hydrocarbon separation membranes
Ohchan Kwon, Minsu Kim, Eunji Choi, Jun Hyuk Bae, Sungmi Yoo, Jong Chan Won, Yun Ho Kim, Ju Ho Shin, Jong Suk Lee, Dae Woo Kim
SJR Q1Science AdvancesOA

] were used as the sacrificial precursor. Successful phase conversion occurs as a result of the collaboration of low template stability and delayed delivery of 2-methylimidazole in weakly interacting solvents, particularly using acetone. When the ZIF-8 nanoplates with an average aspect ratio of 20 were shear aligned in the 6FDA-DAM polymer matrix by bar coating, the separation performance for propylene/propane far surpassed that of the previously reported mixed matrix and polymeric membranes, sh

Inorganic ChemistryChemistry
8
Article|85 citations·2021
Tuning the hierarchical pore structure of graphene oxide through dual thermal activation for high-performance supercapacitor
Jeongpil Kim, Jeong-Hyun Eum, Junhyeok Kang, Ohchan Kwon, Hansung Kim, Dae Woo Kim
SJR Q1Scientific ReportsOA

Abstract Herein, we introduce a simple method to prepare hierarchical graphene with a tunable pore structure by activating graphene oxide (GO) with a two-step thermal annealing process. First, GO was treated at 600 °C by rapid thermal annealing in air, followed by subsequent thermal annealing in N 2 . The prepared graphene powder comprised abundant slit nanopores and micropores, showing a large specific surface area of 653.2 m 2 /g with a microporous surface area of 367.2 m 2 /g under optimized

Electronic, Optical and Magnetic MaterialsMaterials Science
9
Article|82 citations·2019
Ultrafast-Selective Nanofiltration of an Hybrid Membrane Comprising Laminated Reduced Graphene Oxide/Graphene Oxide Nanoribbons
Kyeong Min Cho, Hyeong-Jin Lee, Yoon Tae Nam, Jin Hyoung Kim, Chansol Kim, Kyoung Min Kang, Claudio Adrian Ruiz Torres, Dae Woo Kim, Hee‐Tae Jung
SJR Q1ACS Applied Materials & Interfaces

In this study, reduced graphene oxide (rGO) and graphene oxide nanoribbons (GONRs) are used to fabricate a composite membrane that exhibits ultrafast water permeance (312.8 L m<sup>-2</sup> h<sup>-1</sup> bar<sup>-1</sup>) and precise molecular separation (molecular weight cutoff: 269 Da), which surpass the upper bound of previously reported polymer and graphene-based nanofiltration membranes. As two-dimensional GONR exhibits a width on the scale of nanometers, its nanochannels can be enlarged w

Water Science and TechnologyEnvironmental Science
10
Article|79 citations·2016
Enhanced water permeation based on nanoporous multilayer graphene membranes: the role of pore size and density
Dae Woo Kim, Dae Woo Kim, Jung‐Hoon Choi, Daeok Kim, Daeok Kim, Hee‐Tae Jung
SJR Q1Journal of Materials Chemistry A

Nanoporous graphene (size: <italic>ca.</italic> 3 nm, density: <italic>ca.</italic> 10<sup>15</sup> m<sup>−2</sup>) can be synthesized in bulk by KOH activation of pre-oxidized graphite.

Materials ChemistryMaterials Science
11
Article|79 citations·2022
Enhanced stability of Ti3C2Tx MXene enabled by continuous ZIF-8 coating
Eunji Choi, Juyun Lee, Yong-Jae Kim, Hyerim Kim, Minsu Kim, Junpyo Hong, Yun Chan Kang, Chong Min Koo, Dae Woo Kim, Seon Joon Kim
SJR Q1CarbonOA

MXenes have recently attracted significant interest owing to their outstanding properties and performance. However, their hydrophilic and metastable surfaces make most MXenes prone to oxidation, which can greatly degrade their properties and hinder their practical applications. Here, we enhanced the stability of Ti3C2Tx MXene films by coating a continuous zeolitic imidazolate framework-8 (ZIF-8) layer. The high-density oxygen functional groups of MXene, which are crucial for inducing the nucleat

Materials ChemistryMaterials Science
12
Article|69 citations·2021
Large-Area Ti3C2Tx-MXene Coating: Toward Industrial-Scale Fabrication and Molecular Separation
Ji Hoon Kim, Gyeong Seok Park, Jin Hyoung Kim, Eunji Choi, Junhyeok Kang, Ohchan Kwon, Seon Joon Kim, Jeong Ho Cho, Dae Woo Kim
SJR Q1ACS Nano

Large-scale fabrication of MXene films is in high demand for various applications, but it remains difficult to meet industrial requirements. In this study, we develop a slot-die coating method for the preparation of large-area MXene membranes. The technique allows the fabrication of continuous and scalable coatings with a rapid coating speed of 6 mm s<sup>-1</sup>. The thickness can be readily controlled from the nanometer scale to the micrometer scale, and the alignment of the nanosheet is enha

Materials ChemistryMaterials Science
13
Article|68 citations·2020
Scalable fabrication of deoxygenated graphene oxide nanofiltration membrane by continuous slot-die coating
Ji Hoon Kim, Yunkyu Choi, Junhyeok Kang, Eunji Choi, Seung Eun Choi, Ohchan Kwon, Dae Woo Kim
SJR Q1Journal of Membrane Science
Water Science and TechnologyEnvironmental Science
14
Article|65 citations·2020
Graphene Oxide Nanoribbon Hydrogel: Viscoelastic Behavior and Use as a Molecular Separation Membrane
Yunkyu Choi, Sung‐Soo Kim, Ji Hoon Kim, Junhyeok Kang, Eunji Choi, Seung Eun Choi, Jeong Pil Kim, Ohchan Kwon, Dae Woo Kim
SJR Q1ACS Nano

The preparation of carbon materials based hydrogels and their viscoelastic properties are essential for their broad application and scale-up. However, existing studies are mainly focused on graphene derivatives and carbon nanotubes, and the behavior of graphene nanoribbon (GNR), a narrow strip of graphene, remains elusive. Herein, we demonstrate the concentration-driven gelation of oxidized GNR (graphene oxide nanoribbon, GONR) in aqueous solvents. Exfoliated individual GONRs sequentially assemb

Water Science and TechnologyEnvironmental Science
15
Article|59 citations·2023
N‐Carbon‐Doped Binary Nanophase of Metal Oxide/Metal–Organic Framework for Extremely Sensitive and Selective Gas Response
Hyegi Min, Ohchan Kwon, Jihyun Lee, Eunji Choi, Jihee Kim, Nahyeon Lee, Kiwon Eum, Kyu Hyoung Lee, Dae Woo Kim, Wooyoung Lee
SJR Q1Advanced Materials

Abstract Metal–organic frameworks (MOFs), which are highly ordered structures exhibiting sub‐nanometer porosity, possess significant potential for diverse gas applications. However, their inherent insulative properties limit their utility in electrochemical gas sensing. This investigation successfully modifies the electrical conductivity of zeolitic imidazolte framework‐8 (ZIF‐8) employing a straightforward surface oxidation methodology. A ZIF‐8 polycrystalline layer is applied on a wafer‐scale

Inorganic ChemistryChemistry

Research Areas

Electrical and Electronic EngineeringMaterials ChemistryWater Science and TechnologyBiomedical EngineeringMechanical EngineeringInorganic Chemistry

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