Hong Chul Moon
Affiliations: | University of Seoul, Republic of Korea |
Area:
ion gels, functional electrochemical devices, copolymersGoogle:
"Hong Chul Moon"Mean distance: (not calculated yet)
Parents
Sign in to add mentorC. Daniel Frisbie | post-doc | 2013-2015 | UMN |
Timothy P. Lodge | post-doc | 2013-2015 | UMN |
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Publications
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Yu KS, Kim SY, Moon HC. (2023) High-Voltage Pulse-Assisted Operation of Single-Layer Electrochromic Systems for High Performance and Reliability. Acs Applied Materials & Interfaces |
Kwon JH, Kim YM, Moon HC. (2022) Binary Co-Gelator Strategy: Toward Highly Deformable Ionic Conductors for Wearable Ionoskins. Acs Applied Materials & Interfaces |
Lee JK, Kim YM, Moon HC. (2021) Polymeric Ion Conductors Based on Sono-polymerized Zwitterionic Polymers for Electrochromic Supercapacitors with Improved Shelf-Life Stability. Macromolecular Rapid Communications. e2100468 |
Kwon JH, Kim YM, Moon HC. (2021) Porous Ion Gel: A Versatile Ionotronic Sensory Platform for High-Performance, Wearable Ionoskins with Electrical and Optical Dual Output. Acs Nano |
Kim M, Kim YM, Moon HC. (2020) Asymmetric molecular modification of viologens for highly stable electrochromic devices. Rsc Advances. 10: 394-401 |
Kim SY, Yun TY, Yu KS, et al. (2020) Reliable, High-Performance Electrochromic Supercapacitors Based on Metal-Doped Nickel Oxide. Acs Applied Materials & Interfaces |
In YR, Kim YM, Lee Y, et al. (2020) Ultra-Low Power Electrochromic Heat Shutters through Tailoring Diffusion-Controlled Behaviors. Acs Applied Materials & Interfaces |
Kim KW, Kim YM, Li X, et al. (2020) Various Coating Methodologies of WO According to the Purpose for Electrochromic Devices. Nanomaterials (Basel, Switzerland). 10 |
Kim M, Kim YM, Moon HC. (2020) Asymmetric molecular modification of viologens for highly stable electrochromic devices Rsc Advances. 10: 394-401 |
Hwang H, Lee J, Park SY, et al. (2020) Mechanically robust and thermally stable electrochemical devices based on star-shaped random copolymer gel-electrolytes Journal of Industrial and Engineering Chemistry. 88: 233-240 |