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Enhanced Hydro-Actuation and Capacitance of Electrochemically Inner-Bundle-Activated Carbon Nanotube Yarnsopen access

Authors
Son, WonkyeongLee, Jae MyeongChun, SungwooYu, SeongjunNoh, Jun HoKim, Hyeon WooCho, Sung BeomKim, Seon JeongChoi, Changsoon
Issue Date
Mar-2023
Publisher
American Chemical Society
Keywords
electrochemical activation; inner bundles; carbon nanotube yarns; hydro-actuations; capacitances
Citation
ACS Applied Materials & Interfaces, v.15, no.10, pp 13484 - 13494
Pages
11
Indexed
SCIE
SCOPUS
Journal Title
ACS Applied Materials & Interfaces
Volume
15
Number
10
Start Page
13484
End Page
13494
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/21278
DOI
10.1021/acsami.2c20666
ISSN
1944-8244
1944-8252
Abstract
Recently, several attempts have been made to activate or functionalize macroscopic carbon nanotube (CNT) yarns to enhance their innate abilities. However, a more homogeneous and holistic activation approach that reflects the individual nanotubes constituting the yarns is crucial. Herein, a facile strategy is reported to maximize the intrinsic properties of CNTs assembled in yarns through an electrochemical inner-bundle activation (EIBA) process. The as-prepared neat CNT yarns are two-end tethered and subjected to an electrochemical voltage (vs Ag/AgCl) in aqueous electrolyte systems. Massive electrolyte infiltration during the EIBA causes swelling of the CNT interlayers owing to the tethering and subsequent yarn shrinkage after drying, suggesting activation of the entire yarn. The EIBA-treated CNT yarns functionalized with oxygen-containing groups exhibit enhanced wettability without significant loss of their physical properties. The EIBA effect of the CNTs is experimentally demonstrated by hydration-driven torsional actuation (similar to 986 revolutions/m) and a drastic capacitance improvement (approximately 25-fold).
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