Advanced Hybrid-Ion Batteries 2019

A special issue of Batteries (ISSN 2313-0105).

Deadline for manuscript submissions: closed (13 November 2019) | Viewed by 372

Special Issue Editor


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Guest Editor
Institute of Solid State Chemistry and Mechanochemistry at the SB RAS, Kutateladze 18, 630128 Novosibirsk, Russia
Interests: mechanochemical synthesis and characterization of cathode; anode and electrolyte materials for rechargeable lithium and sodium batteries
Special Issues, Collections and Topics in MDPI journals

Special Issue Information

Dear colleagues,

The hybrid-ion batteries (HIB), in which various alkaline and alkaline-earth metal ions are engaged simultaneously in the cycling process, provide a new perspective towards advanced energy storage combining the advantages of different metal-ion batteries. HIB have attracted widespread attention recently due to their new promising properties, which are not a simple superposition of the properties of single-ion batteries. Although the investigation of HIB is still at initial stages, an excellent opportunity for overcoming the disadvantages of single-ion batteries is expected in the near future. New Na+/Li+, K+/Li+, and Mg2+/Li rechargeable batteries that can stably (de)intercalate Li+, Na+, K+, and Mg2+ simultaneously, among others. The most important aspect is the ability to use sodium, potassium, and magnesium compounds directly as a cathode in a Li-ion cell. This offers significant advantages with respect to the high cost of lithium and its low availability, and the possibility of developing viable Na-, K-, and Mg-ion cells. Other types of HIB are hybrid aqueous rechargeable batteries and Daniel-battery type dual-salt metal storage batteries. The excellent properties of HIB include enhanced rate performance, superior Coulombic efficiency, low-cost, etc.

Potential topics include, but are not limited to, the following:

  • Hybrid-ion batteries
  • Dual-metal ion batteries
  • Dual-salt hybrid rechargeable batteries
  • Na+/Li+ rechargeable batteries
  • Mg2+/Li+ rechargeable batteries
  • Hybrid aqueous rechargeable batteries
  • Daniel-battery type dual-salt metal storage batteries
  • New matrices for Li intercalation

Prof. Dr. Nina Kosova
Guest Editor

Manuscript Submission Information

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Published Papers

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