4.8 Article

Impact of Electrolyte Salts on Na Storage Performance for High-Surface-Area Carbon Anodes

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 13, 期 41, 页码 48745-48752

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.1c14334

关键词

electrolyte; solid electrolyte interface; high-surface-area carbon anode; sodium-ion batteries; initial Coulombic efficiency

资金

  1. National Key R&D Program of China [2016YFB0700600, 2020YFB0704500]
  2. Shenzhen Science and Technology Research Grants [JCYJ20200109140416788]
  3. Chemistry and Chemical Engineering Guangdong Laboratory [1922018]

向作者/读者索取更多资源

The use of NaCF3SO3 electrolyte salt has been found to significantly improve the initial Coulombic efficiency and reversible capacity of high-surface-area carbon anode, attributed to the reduced amount of NaxC and formation of a thinner SEI layer providing extra active sites for Na+ storage.
High-surface-area carbon (HSAC) has been regarded as one of the most promising anode materials for sodium-ion batteries. However, it generally suffers from low initial Coulombic efficiency (ICE), which is closely related to the formation process of a solid electrolyte interface (SEI). Herein, the impact of different electrolyte salts on the electrochemical performance and SEI formation of a commercial HSAC anode is studied. It is found that the use of NaCF3SO3 enables much higher ICE (69.28%) and reversible capacity (283 mA h g(-1)) of the HSAC anode compared with the NaPF6 electrolyte (59.65%, 243 mA h g(-1)). Through comprehensive characterizations, the improvement in electrochemical performance facilitated by NaCF3SO3 could be attributed to the reduced amount of NaxC and the thinner SEI formed on the surface of HSAC during the initial cycle, which not only provides extra active sites for Na+ storage but also contributes to the promoted ICE. This work not only provides a deeper understanding of the role of electrolyte salt in SEI formation in the HSAC anode but also proposes a new method to further promote the ICE of the HSAC anode in sodium-ion batteries.

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