Review—Hard Carbon Negative Electrode Materials for Sodium-Ion Batteries
Обзор — Материалы из твердого углерода для отрицательных электродов натрий-ионных аккумуляторов
2015-01-01
SCID: 54.1/vj2k2f6t
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electrolyte effectshard carbonirreversible capacitynegative electrodessodium-ion batteries
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Abstract (AI)
A first review of hard carbon materials as negative electrodes for sodium ion batteries is presented, covering not only the electrochemical performance but also the synthetic methods and microstructures. The relation between the reversible and irreversible capacities achieved and microstructural features is described and illustrated with specific experiments while discussing also the effect of the electrolyte. A summary of the current knowledge is given while emphasizing the possibility of further performance improvements by thoroughly mastering structure-property relationships and also discussing the main current bottleneck to maximize energy density in real applications: the first cycle irreversible capacity. Finally, a short conclusion and perspectives session is provided highlighting necessary developments in the field to turn the present optimistic research prospects into tangible practical products.
Key Findings
1
Electrolyte composition influences hard-carbon electrochemical behavior and must be considered when evaluating performance.
2
Further performance improvements depend on controlling structure–property relationships through better understanding and optimization of hard-carbon microstructures.
3
Reversible and irreversible capacities are linked to hard-carbon microstructural features, with specific experiments illustrating these structure–property relationships.
4
The first-cycle irreversible capacity is identified as the main bottleneck limiting maximum energy density in practical sodium-ion battery applications.
5
This review examines hard carbon as a negative-electrode material for sodium-ion batteries, integrating electrochemical performance, synthesis methods, and microstructure.
Research Object
hard carbon negative electrode materials for sodium-ion batteries
Research Subject
electrochemical performance, microstructure–capacity relationships, electrolyte effects, and first-cycle irreversible capacity limiting energy density
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Publication Date
2015-01-01
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