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1
The Role of Al Atoms in Resistive Switching for Al/ZnO/Pt Resistive Random Access Memory(RRAM) Device
Seung Woo Han, Chul Jin Park, Moo Whan Shin*
Surfaces and Interfaces, 2022
2
Low-viscosity quaternary ammonium-based ionic liquid electrolytes for lithium air batteries
Hyunjee Yoon, Seoyoon Shin, Sooyeol Park, Moo Whan Shin*
Journal of Molecular Liquids, 2022
3
Template-assisted synthesis of single-atom catalysts supported on highly crystalline vanadium pentoxide for stable oxygen evolution
Chul Min Youn+, Seoyoon Shin+, Kihyun Shin+, ... Moo Whan Shin*, Graeme Henkelman*, Ki Ro Yoon*
Chem Catalysis, 2022
4
Application of Nanosecond Laser to a Direct and Rapid Growth of Cu-BTC Metal-Organic Framework Thin films on Copper Substrate
Chang Taek Lee, Seung Woo Han, Moo Whan Shin*
Surfaces and Interfaces, 2022
5
UV-Laser Annealing to Improve Resistive Switching Performance and Reliability of Flexible Resistive Random-Access Memory
Seung Woo Han, Moo Whan Shin*
Journal of Alloys and Compounds, 2022
6
Co/Zn-based bimetallic MOF-derived hierarchical porous Co/C composite as a cathode for high-performance lithium-air batteries
Seoyoon Shin, Yeowon Yoon, Moo Whan Shin*
Int J Energy Res, 2022
7
Ammonium Ionic Liquid–Functionalized Phenothiazine as a New Redox Mediator for High Chemical Stability on the Anode Surface in Lithium–Air Batteries
Yeowon Yoon, Seoyoon Shin, Moo Whan Shin*
ACS Appl. Mater. Interfaces, 2022
8
Nickel metal–organic framework (Ni-MOF) derived NiO/C@CNF composite for the application of high performance self-standing supercapacitor electrode
Seoyoon Shin, Moo Whan Shin*
Applied Surface Science, 2021
9
Porosity tailoring of the Zn-MOF-5 derived carbon materials and its effects on the performance as a cathode for lithium-air batteries
Seoyoon Shin, Hyunjee Yoon, Yeowon Yoon, Sooyeol Park, Moo Whan Shin*
Microporous and Mesoporous Materials, 2021
10
Solvothermal growth of Mg-MOF-74 films on carboxylic functionalized silicon substrate using acrylic acid
Chang Taek Lee, Moo Whan Shin*
Surfaces and Interfaces, 2021
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