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Li5VF4(SO4)2: A Prototype High-Voltage Li-Ion Cathode.

Rebecca C VincentPratap VishnoiMolleigh B PreeferJimmy-Xuan ShenFabian SeelerKristin Aslaug PerssonRam Seshadri
Published in: ACS applied materials & interfaces (2020)
A Li-rich polyanionic compound based on V3+ with a previously unknown structure, Li5VF4(SO4)2, has been developed as a high-voltage cathode material for Li-ion batteries. The solvothermal preparation of this material, crystal structure solution, and initial electrochemical characterization are presented. An analysis based on density functional theory electronic structure calculations suggests that a high voltage close to 5 V is required to extract two Li ions and to reach the oxidation state of V5+. However, the use of conventional carbonate-based electrolytes, which exhibit increasing degradation above a potential of 4.3 V, does not permit the full capacity of this compound to be achieved at this time.
Keyphrases
  • ion batteries
  • density functional theory
  • crystal structure
  • molecular dynamics
  • oxidative stress
  • molecularly imprinted
  • molecular dynamics simulations
  • hydrogen peroxide
  • climate change
  • nitric oxide
  • ionic liquid