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Porous Electrospun Carbon Nanofibers Bearing TiO2 Hollow Nanospheres for Supercapacitor Electrodes
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Metadata
Document Title
Porous Electrospun Carbon Nanofibers Bearing TiO2 Hollow Nanospheres for Supercapacitor Electrodes
Author
Wongprasod S., Tanapongpisit N., Laohana P., Huyen Nguyen T.M., Van H.Q., Kim S., Srikam S., Sonsupap S., Chanlek N., Horprathum M., Khamkongkaeo A., Maensiri S., Meevasana W., Bark C.W., Saenrang W.
Affiliations
Department of Production Engineering, Faculty of Engineering, King Mongkut's University of Technology Thonburi, 126 Pracha-Utid Rd., Bangmod, Tungkhru, Bangkok, 10140, Thailand; National Metal and Materials Technology Center (MTEC), National Sciences and Technology Development Agency (NSTDA), 111 Thailand Science Park, Paholyothin Road, Klong 1, Klong Luang, Pathumthani, 12120, Thailand; Faculty of International Maritime Studies, Kasetsart University, Sriracha, Chonburi20230, Thailand
Type
Article
Source Title
Journal of Materials Research and Technology
ISSN
22387854
Year
2024
Volume
30
Page
3066-3078
Open Access
All Open Access, Gold
Publisher
Elsevier Editora Ltda
DOI
10.1016/j.jmrt.2024.04.045
Abstract
Al–Ni-Sc alloys exhibit superior mechanical properties at both room and elevated temperatures, owing to the high thermal and chemical stability of Al3Ni microfibers, and Al3Sc nanoprecipitates. This study explores the impact of scandium additions (0.2 and 0.4 wt%) in eutectic Al–6Ni casting alloys and the influence of aging treatment on electrochemical corrosion behavior in a 0.05 M NaCl solution. Scandium addition did not alter the polarization curve direction but reduced the anodic current density, slowing corrosion. Scandium strengthened the passive film, evident in Electrochemical Impedance Spectroscopy (EIS) with higher Rp values. Sc addition influences the susceptibility to localized corrosion in Al–Ni alloys by promoting the coherence of passive films through the formation of Al3Sc nanoprecipitates and affecting the distribution of Al3Ni. XPS results show that as-aged Sc-containing increases the density of coherent Al3Sc nanoprecipitates, which could result in the formation of Sc2O3 film along with films like Ni2O3 and Al2O3. These synergistic effects contribute to improving the overall corrosion resistance with Sc additions subjected to aging treatment. The microgalvanic effects between the matrix and reinforcement phases, as a result of the formation of nobler Al3Ni and Al3Sc that serve as cathodes within anode Al matrix, cause severe pitting. Nevertheless, after aged treatment, the corrosion resistance dramatically drops for alloys with 0.2 wt% Sc and remains unchanged for 0.4 wt% Sc, due to higher density of nobler Al3Sc nanoprecipitates phase that can counteract the microgalvanic effects and lead to less extensive pitting than as-aged Al–6Ni-0.2Sc. ? 2024 The Author(s)
Keyword
Al | Casting | Ni | Potentiodynamic polarization | Precipitation hardening | ray photoelectron spectroscopy | Sc | X
License
CC BY-NC-ND
Rights
Authors
Publication Source
WoS