4.8 Article

All Carbon Dual Ion Batteries

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 10, 期 42, 页码 35978-35983

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.8b11824

关键词

Graphite; Hard carbon; Dual ion batteries; Anion ion batteries; Pseudocapacitance

资金

  1. Australian Research Council [LP120200432]
  2. Commonwealth of Australia through the Automotive Australia 2020 Cooperative Research Centre (Auto CRC)
  3. National key RD Program [2016YFB0901502]
  4. Korea Research Fellowship Program of the NRF - Ministry of Science and ICT [2016H1D3A1906790]
  5. NFSC [51771094]

向作者/读者索取更多资源

Dual ion batteries based on Na+ and PF6- received considerable attention due to their high operating voltage and the abundant Na resources. Here, cheap and easily obtained graphite that served as a cathode material for dual ion battery delivered a very high average discharge platform (4.52 V vs Na+/Na) by using sodium hexafluorophosphate in propylene carbonate as electrolyte. More-over, the all-carbon dual ion batteries with graphite as cathode and hard carbon as anode exhibited an ultrahigh discharge voltage of 4.3 V, and a reversible capacity of 62 mAh.g-1 at 40 mA.g(-1). Phase changes have been investigated in detail through in situ X-ray diffraction and in situ Raman characterizations. The stable structure provides long life cycling performance, and the pseudocapacitance behavior also demonstrates its benefits to the rate capability. Thus, dual ion batteries based on sodium chemistry are very promising to find their applications in future.

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