Superior sodium storage anode constructed via chemical bonding between S-doped hard carbon and graphene oxide binder
Author:
Funder
Shaanxi Provincial Innovation Capability Support Program
National Natural Science Foundation of China
Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s11581-024-05776-y.pdf
Reference33 articles.
1. Singh AN, Islam M, Meena A, Faizan M, Han D, Bathula C, Hajibabaei A, Anand R, Nam KW (2023) Unleashing the potential of sodium-ion batteries: current state and future directions for sustainable energy storage. Adv Funct Mater. https://doi.org/10.1002/adfm.202304617
2. AlHazaimeh T, Raheem M, Al-Othman A (2024) Covalent organic frameworks (COFs): characteristics and applications for lithium-ion batteries (LIBs) and sodium ion batteries (SIBs). Int J Thermofluid. https://doi.org/10.1016/j.ijft.2023.100531
3. Bai H, Zhu X, Ao H, He G, Xiao H, Chen Y (2024) Advances in sodium-ion batteries at low-temperature: challenges and strategies. J Energy Chem. https://doi.org/10.1016/j.jechem.2023.11.004
4. Wang G, Yu M, Feng X (2021) Carbon materials for ion-intercalation involved rechargeable battery technologies. Chem Soc Rev. https://doi.org/10.1039/d0cs00187b
5. Song K, Liu C, Mi L, Chou S, Chen W, Shen C (2021) Recent progress on the alloy-based anode for sodium-ion batteries and potassium-ion batteries. Small. https://doi.org/10.1002/smll.201903194
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