Flexible, binder-free, freestanding silicon/oxidized carbon nanotubes composite anode for lithium-ion batteries with enhanced electrochemical performance through chemical reduction
- Authors
- Kim, Jung-Soo; Baek, In-Gyu; Nyamaa, Oyunbayar; Goo, Kyeong-Mo; Uyanga, Nyamaa; Kim, Ki-Sung; Nam, Tae-Hyun; Yang, Jeong-Hyeon; Noh, Jung-Pil
- Issue Date
- Mar-2025
- Publisher
- Elsevier BV
- Keywords
- Binder-free; Chemical reduction; Freestanding; Lithium-ion batterie; Oxidized carbon nanotube; Silicone anode
- Citation
- Materials Science & Engineering B, v.313
- Indexed
- SCIE
SCOPUS
- Journal Title
- Materials Science & Engineering B
- Volume
- 313
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/75553
- DOI
- 10.1016/j.mseb.2024.117971
- ISSN
- 0921-5107
1873-4944
- Abstract
- Multi-walled carbon nanotubes (MWCNTs) can mitigate the issues of volume expansion and low electrical conductivity in silicon (Si) anodes, enabling the fabrication of binder-free, freestanding electrodes. However, MWCNTs tend to aggregate due to π-π interactions associated with sp2 orbitals, necessitating the use of dispersants or acid treatment to improve dispersion. To enhance dispersion, we applied an acid treatment; however, this led to a reduction in electrical conductivity due to a decrease in pz orbitals. To overcome this issue, we introduced an additional chemical reduction step after fabricating the Si/oxidized MWCNT (OCNT) composite anode, which preserved the dispersion of MWCNTs while restoring electrical conductivity. The chemically reduced Si/OCNT composite anode exhibited significantly decreased charge transfer resistance before and after cycling, along with excellent bending resistance. As a result, it maintained a stable discharge specific capacity of 768 mAh g−1 even after 150 cycles. Collectively, our findings highlight the critical role of chemical reduction in enhancing the electrochemical performance of Si/OCNT composite anodes, presenting a promising approach for next-generation lithium-ion batteries. © 2024 Elsevier B.V.
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- 공학계열 > Dept.of Materials Engineering and Convergence Technology > Journal Articles
- 해양과학대학 > 기계시스템공학과 > Journal Articles

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