Welcome To
Energy materials Laboratory
@ Pukyong National University
sci papers
After PKNU (2023.09. ~)
Before PKNU (~ 2023.08.)
[44] C.S. Lee†, J. Moon†, J.T. Park*, J.H. Kim*, Engineering CO2-philic pathway via grafting poly(ethylene glycol) on graphene oxide for mixed matrix membranes with high CO2 permeance, Chemical Engineering Journal 2023, 453, 139818
[43] C.S. Lee, H. Jang, J. Kim*, J.H. Kim*, Interconnected, Hierarchically Porous TiO2 Nanoisland Membranes for Photocatalytic Wastewater Treatment, submitted
[41] S.J. Moon, H.J. Min, C.S. Lee, D.R. Kang, J.H. Kim*, Adhesive, free-standing, partially fluorinated comb copolymer electrolyte films for solid flexible supercapacitors, Chemical Engineering Journal 2022, 429, 132240
[39] C.S. Lee†, N.U. Kim†, H.J. Min, M. Kang, J.H. Kim*, Mille-feuille-like heterostructures through in situ cross-linking approach for high power density supercapacitor, Chemical Engineering Journal 2021, 412, 128750
[36] C.H. Park, E.M. Go, K.M. Lee, C.S. Lee, S.K. Kwak*, J.H. Kim*, Substrate-independent three-dimensional polymer nanosheets induced by solution casting, Chemical Science 2021, 12, 11748-11755
[34] C.S. Lee, N.U. Kim, B.J. Park, J.H. Kim*, In-situ Growth of ZIF-8 in Amphiphilic Graft Copolymer for Mixed Matrix Membranes with Simultaneous Improvement of Permeability and Selectivity, Separation and Purification Technology 2020, 253, 117514
[32] C.S. Lee†, S.H. Ahn†, D.J. Kim, J.H. Lee, A. Manthiram*, J.H. Kim*, Flexible, All-solid-state 1.4 V Symmetric Supercapacitors with High Energy Density Based on Comb Polymer Electrolyte and 1D Hierarchical Carbon Nanotube Electrode, Journal of Power Sources 2020, 474, 228477
[31] J.K. Kim, C.S. Lee, J.H. Lee, J.T. Park, J.H. Kim*, Ni, Co-double Hydroxide Wire Structures with Controllable Voids for Electrodes of Energy-storage Devices, Journal of Materials Science & Technology 2020, 55, 126-135
[30] C.S. Lee, N.U. Kim, J.T. Park, J.H. Kim*, Imidazole-Functionalized Hydrophilic Rubbery Comb Copolymers: Microphase-separation and Good Gas Separation Properties, Separation and Purification Technology 2020, 242, 116780
[28] C.S. Lee†, J. Moon†, J.T. Park*, J.H. Kim*, Highly Interconnected Nanorods and Nanosheets Based on a Hierarchically Layered Metal–organic Framework for a Flexible, High-performance Energy Storage Device, ACS Sustainable Chemistry & Engineering 2020, 8, 3773-3785
[27] J.H. Lee, M.S. Park, C.S. Lee, T.S. Han, J.H. Kim*, Wear-resistant Carbon Nanorod-embedded Poly(vinylidene fluoride) Composites with Excellent Tribological Performance, Composites Part A: Applied Science and Manufacturing 2020, 129, 105721
[26] W.S. Chi, C.S. Lee, J.T. Park, J.H. Kim*, Highly Catalytic and Reflective Dual-phase Nickel Sulfide Electrodes for Solar Energy Conversion, Applied Surface Science 2018, 457, 1151-1157
[24] C. Noh†, C.S. Lee†, W.S. Chi, Y. Chung, J.H. Kim*, Y. Kwon*, Vanadium Redox Flow Battery Using Electrocatalyst Decorated with Nitrogen-doped Carbon Nanotubes Derived from Metal-organic Frameworks, Journal of the Electrochemical Society 2018, 165, A1388
[23] D.J. Kim, J.W. Yoon, C.S. Lee, Y.S. Bae*, J.H. Kim*, Covalent Organic Framework-derived Microporous Carbon Nanoparticles Coated with Conducting Polypyrrole as an Electrochemical Capacitor, Applied Surface Science 2018, 439, 833-838
[21] J.T. Park, C.S. Lee, C.H. Park, J.H. Kim*, Preparation of TiO2/Ag Binary Nanocomposite as High-activity Visible-light-driven Photocatalyst via Graft Polymerization, Chemical Physics Letters 2017, 685, 119-126
[20] J.Y. Lim, J.K. Kim, C.S. Lee, J.M. Lee, J.H. Kim*, Hybrid Membranes of Nanostructrual Copolymer and Ionic Liquid for Carbon Dioxide Capture, Chemical Engineering Journal 2017, 322, 254-262
[16] C.S. Lee, J.T. Park*, J.H. Kim*, Structural Color-tunable Mesoporous Bragg Stack Layers Based on Graft Copolymer Self-assembly for High-efficiency Solid-state Dye-sensitized Solar Cells, Journal of Power Sources 2016, 324, 637-645
[10] D.J. Kim, S.H. Ahn, C.S. Lee, J.H. Kim*, A Triple-layered, Hierarchical 1D Core–shell Nanostructure with a Plasmonic Ag Octahedral Core for Use in Solid-state Dye-sensitized Solar Cells, Journal of Materials Chemistry A 2015, 3, 17644-17651
[9] W.S. Chi, D.K. Roh, C.S. Lee, J.H. Kim*, A Shape-and Morphology-Controlled Metal Organic Framework Template for High-efficiency Solid-state Dye-sensitized Solar Cells, Journal of Materials Chemistry A 2015, 3, 21599-21608
[5] D.J. Kim, J.K. Koh, C.S. Lee, J.H. Kim*, Mesh‐Shaped Nanopatterning of Pt Counter Electrodes for Dye‐Sensitized Solar Cells with Enhanced Light Harvesting, Advanced Energy Materials 2014, 4, 1400414
[4] S.Y. Heo, J.K. Koh, J.K. Kim, C.S. Lee, J.H. Kim*, Three-dimensional Conducting Polymer Films for Pt-free Counter Electrodes in Quasi-solid-state Dye-sensitized Solar Cells, Electrochimica Acta 2014, 137, 34-40
[3] J.T. Park, S.H. Ahn, D.K. Roh, C.S. Lee, J.H. Kim*, Multifunctional Organized Mesoporous Tin Oxide Films Templated by Graft Copolymers for Dye‐Sensitized Solar Cells, ChemSusChem 2014, 7, 2037-2047
[1] S.Y. Heo, W.S. Chi, J.K. Kim, C.S. Lee, J.H. Kim*, Preparation of TiO2 Nanowires/Nanoparticles Composite Photoanodes for Dye-sensitized Solar Cells, Rapid Communication in Photoscience 2013, 2, 82-84