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Lee, Dong Woog (이동욱)

Department
School of Energy and Chemical Engineering(에너지화학공학과)
Website
http://dwlee.unist.ac.kr/
Lab
Interfacial Physics and Chemistry Lab. (계면물리및화학 연구실)
Research Keywords
계면물리, 생체모방, 표면젖음, 비특정 상호작용, 특정 상호작용, 기능성 고분자, 접착제, 코팅, 윤활유, interfacial physics, biomimetics, surface wetting, nonspecific interactions, specific interactions, functional polymers, adhesives, coatings, lubricants
Research Interests
Interfacial Physics and Chemistry Laboratory (IPCL) focuses on fundamental understanding of physics and chemistry at interfaces/surfaces ranging from bio-surfaces (i.e., lipid membranes, protein films, biopolymers), polymeric films, and inorganic surfaces (i.e., metals and metal oxides). We aim to use our knowledge to develop high performance polymeric and/or polymer composite materials for various purposes such as functional adhesives (e.g. underwater, stretchable, biocompatible, conductive, hydrophilic), lubricants (ocular, synovial, high and low temperature), and coatings (hydro-philic/phobic, aero-philic/phobic, antifouling).
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Issue DateTitleAuthor(s)TypeViewAltmetrics
2021-02Stretchable and recoverable acrylate-based pressure sensitive adhesives with high adhesion performance, optical clarity, and metal corrosion resistanceLee, Ju Hak; Park, Jintae; Myung, Min Hoon, et alARTICLE78 Stretchable and recoverable acrylate-based pressure sensitive adhesives with high adhesion performance, optical clarity, and metal corrosion resistance
2020-11The shape and dynamics of deformations of viscoelastic fluids by water dropletsSeo, Dongjin; Chen, Szu-Ying; Lee, Dong Woog, et alARTICLE74 The shape and dynamics of deformations of viscoelastic fluids by water droplets
2020-11Bioinspired polymers for lubrication and wear resistanceAdibnia, Vahid; Mirbagheri, Marziye; Faivre, Jimmy, et alARTICLE29 Bioinspired polymers for lubrication and wear resistance
2020-05Mussel-Inspired Copolyether Loop with Superior Antifouling BehaviorShin, Eeseul; Lim, Chanoong; Kang, Uk Jung, et alARTICLE158 Mussel-Inspired Copolyether Loop with Superior Antifouling Behavior
2020-04Superaerophobic hydrogels for enhanced electrochemical and photoelectrochemical hydrogen productionJeon, Dasom; Park, Jinwoo; Shin,Changhwan, et alARTICLE216 Superaerophobic hydrogels for enhanced electrochemical and photoelectrochemical hydrogen production
2020-01Contact-induced molecular rearrangement of acrylic acid-incorporated pressure sensitive adhesivesLee, Ju Hak; Lee, Dong WoogARTICLE255 Contact-induced molecular rearrangement of acrylic acid-incorporated pressure sensitive adhesives
2020-01In-Depth Study of the Interaction Mechanism between the Lignin Nanofilms: Toward a Renewable and Organic Solvent-Free BinderSong, Yoojung; Park, Jinwoo; Lim, Chanoong, et alARTICLE193 In-Depth Study of the Interaction Mechanism between the Lignin Nanofilms: Toward a Renewable and Organic Solvent-Free Binder
2019-12Development of Poly(methyl methacrylate)-Based Copolymers with Improved Heat Resistance and Reduced Moisture AbsorptionPark, Jintae; Baek, Myung-Jin; Choi, Hyun Woo, et alARTICLE307 Development of Poly(methyl methacrylate)-Based Copolymers with Improved Heat Resistance and Reduced Moisture Absorption
2019-12Multimodal Miniature Surface Forces Apparatus (μSFA) for Interfacial Science MeasurementsKristiansen, Kai; Donaldson, Stephen H.; Berkson, Zachariah J., et alARTICLE290 Multimodal Miniature Surface Forces Apparatus (μSFA) for Interfacial Science Measurements
2019-08Probing molecular mechanisms of M13 bacteriophage adhesionLim, Chanoong; Ko, Jina; Jeon, Dasom, et alARTICLE213 Probing molecular mechanisms of M13 bacteriophage adhesion
2019-07Effects of monomer functionality on physical properties of 2-ethylhexyl acrylate based stretchable pressure sensitive adhesivesLee, Ju Hak; Myung, Min Hoon; Baek, Myung Jin, et alARTICLE365 Effects of monomer functionality on physical properties of 2-ethylhexyl acrylate based stretchable pressure sensitive adhesives
2019-03Real-Time QCM-D Monitoring of Deposition of Gold Nanorods on a Supported Lipid Bilayer as a Model Cell MembraneGuo, Huxiang; Xing, Qiguo; Huang, Renliang, et alARTICLE178 Real-Time QCM-D Monitoring of Deposition of Gold Nanorods on a Supported Lipid Bilayer as a Model Cell Membrane
2018-11Revisiting the Interaction Force Measurement between Lipid Bilayers Using a Surface Forces Apparatus (SFA)Lee, Dong WoogARTICLE335 Revisiting the Interaction Force Measurement between Lipid Bilayers Using a Surface Forces Apparatus (SFA)
2018-08Rates of cavity filling by liquidsSeo, Dongjin; Schrader, Alex M.; Chen, Szu-Ying, et alARTICLE457 Rates of cavity filling by liquids
2018-07Probing Nanomechanical Interaction at the Interface between Biological Membrane and Potentially Toxic ChemicalLim, Chanoong; Park, Sohee; Park, Jinwoo, et alARTICLE533 Probing Nanomechanical Interaction at the Interface between Biological Membrane and Potentially Toxic Chemical
2017-10Significant Performance Enhancement of Polymer Resins by Bioinspired Dynamic BondingSeo, Sungbaek; Lee, Dong Woog; Ahn, Jin Soo, et alARTICLE526 Significant Performance Enhancement of Polymer Resins by Bioinspired Dynamic Bonding
2017-09Contact Angle and Adhesion Dynamics and Hysteresis on Molecularly Smooth Chemically Homogeneous SurfacesChen, Szu-Ying; Kaufman, Yair; Schrader, Alex M., et alARTICLE378 Contact Angle and Adhesion Dynamics and Hysteresis on Molecularly Smooth Chemically Homogeneous Surfaces
2017-06표면 힘 측정기를 이용한 고분자의 물리적 성질 측정임찬웅; 이동욱ARTICLE228
2017-03Simple-to-Apply Wetting Model to Predict Thermodynamically Stable and Metastable Contact Angles on Textured/Rough/Patterned SurfacesKaufman, Yair; Chen, Szu-Ying; Mishra, Himanshu, et alARTICLE728 Simple-to-Apply Wetting Model to Predict Thermodynamically Stable and Metastable Contact Angles on Textured/Rough/Patterned Surfaces
2016-04Underwater contact adhesion and microarchitecture in polyelectrolyte complexes actuated by solvent exchangeZhao, Qiang; Lee, Dong Woog; Ahn, B. Kollbe, et alARTICLE852 Underwater contact adhesion and microarchitecture in polyelectrolyte complexes actuated by solvent exchange

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