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Kue-Ho Kim
Kue-Ho Kim
A Department of Materials Science and Engineering, Seoul National University of Science and Technology
在 seoultech.ac.kr 的电子邮件经过验证
标题
引用次数
引用次数
年份
Switching electrochromic performance improvement enabled by highly developed mesopores and oxygen vacancy defects of Fe-doped WO3 films
BR Koo, KH Kim, HJ Ahn
Applied Surface Science 453, 238-244, 2018
662018
Multifunctional electrochromic energy storage devices by chemical cross-linking: impact of a WO3· H2O nanoparticle-embedded chitosan thin film on amorphous WO3 films
BR Koo, MH Jo, KH Kim, HJ Ahn
NPG Asia Materials 12 (1), 10, 2020
552020
Sheet resistance dependence of fluorine-doped tin oxide films for high-performance electrochromic devices
KH Kim, BR Koo, HJ Ahn
Ceramics International 44 (8), 9408-9413, 2018
462018
Amorphous-quantized WO3· H2O films as novel flexible electrode for advanced electrochromic energy storage devices
BR Koo, MH Jo, KH Kim, HJ Ahn
Chemical Engineering Journal 424, 130383, 2021
402021
Effects of Sb-doped SnO2–WO3 nanocomposite on electrochromic performance
KH Kim, BR Koo, HJ Ahn
Ceramics International 45 (13), 15990-15995, 2019
392019
P-doped carbon quantum dot graft-functionalized amorphous WO3 for stable and flexible electrochromic energy-storage devices
MH Jo, KH Kim, HJ Ahn
Chemical Engineering Journal 445, 136826, 2022
382022
Surface amending effect of N-doped carbon-embedded NiO films for multirole electrochromic energy-storage devices
KH Kim, SJ Jeong, BR Koo, HJ Ahn
Applied Surface Science 537, 147902, 2021
362021
Nitrogen-doped carbon quantum dots decorated on platinum catalysts for improved oxygen reduction reaction
HG Jo, KH Kim, HJ Ahn
Applied Surface Science 554, 149594, 2021
312021
Simultaneous effect of fluorine impregnation on highly mesoporous activated carbon used in high-performance electrical double layer capacitors
KH Kim, JS Lee, HJ Ahn
Applied Surface Science 550, 149266, 2021
232021
Tailored interface stabilization of FTO transparent conducting electrodes boosting electron and Li ion transport for electrochromic energy-storage devices
MH Jo, BR Koo, KH Kim, HJ Ahn
Chemical Engineering Journal 431, 134036, 2022
212022
Novel tunneled phosphorus-doped WO 3 films achieved using ignited red phosphorus for stable and fast switching electrochromic performances
K Bon-Ryul, KH Kim, HJ Ahn
Nanoscale 11 (7), 3318-3325, 2019
192019
Novel tunneled phosphorus-doped WO3 films achieved using ignited red phosphorus for stable and fast switching electrochromic performances
BR Koo, KH Kim, HJ Ahn
Nanoscale 11, 3318-3325, 2019
172019
Binary sulfuric effect on ZnO laminated carbon nanofibers hybrid structure for ultrafast lithium storage capability
KH Kim, W Hu, HS Chang, HJ Ahn
Journal of Alloys and Compounds 896, 163148, 2022
142022
Vacancy-engineered V2O5-x films for ultrastable electrochromic applications
SJ Jeong, KH Kim, HJ Ahn
Ceramics International 48 (7), 9400-9406, 2022
132022
Surface functional group‐tailored B and N co‐doped carbon quantum dot anode for lithium‐ion batteries
KH Kim, HJ Ahn
International Journal of Energy Research 46 (6), 8367-8375, 2022
112022
Well-dispersed Pt/RuO 2-decorated mesoporous N-doped carbon as a hybrid electrocatalyst for Li–O 2 batteries
HG Jo, KH Kim, HJ Ahn
RSC advances 11 (20), 12209-12217, 2021
112021
N-doped mesoporous activated carbon derived from protein-rich biomass for energy storage applications
KH Kim, YJ Song, HJ Ahn
Korean Journal of Chemical Engineering 40 (5), 1071-1076, 2023
102023
NTO laminated graphite felt as high-performance negative electrode for vanadium redox flow batteries
WF Liu, KH Kim, HJ Ahn
Journal of Alloys and Compounds 954, 170106, 2023
92023
Protein-assisted bendable Cu-free anode: Hydroxy-functionalized mesoporous carbon matrix for flexible Li-ion batteries
KH Kim, YJ Song, HJ Ahn
Applied Surface Science 608, 155084, 2023
92023
MXene framework‐supported F, S, and Co ternary‐doped tin dioxide hybrid structures for ultrafast and stable lithium‐ion batteries
KH Kim, YJ Song, HJ Ahn
International Journal of Energy Research 46 (8), 11336-11345, 2022
82022
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