4.8 Article

Phosphates as Lithium-Ion Battery Cathodes: An Evaluation Based on High-Throughput ab Initio Calculations

Journal

CHEMISTRY OF MATERIALS
Volume 23, Issue 15, Pages 3495-3508

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/cm200949v

Keywords

Li-ion battery; cathode; phosphates; ab initio; DFT; high-throughput; thermal stability; safety

Funding

  1. Bosch
  2. Umicore
  3. U.S. Department of Energy, Department of Energy Computational Science [DE-FG02-97ER25308]

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Phosphate materials are being extensively studied as lithium-ion battery electrodes. In this work, we present a high-throughput ab initio analysis of phosphates as cathode materials. Capacity, voltage, specific energy, energy density, and thermal stability are evaluated computationally on thousands of compounds. The limits in terms of gravimetric and volumetric capacity inherent to the phosphate chemistry are determined. Voltage ranges for all redox couples in phosphates are provided, and the structural factors influencing the voltages are analyzed. We reinvestigate whether phosphate materials are inherently safe and find that, for the same oxidation state, oxygen release happens thermodynamically at lower temperature for phosphates than for oxides. These findings are used to recommend specific chemistries within the phosphate class and to show the intrinsic limits of certain materials of current interest (e.g., LiCoPO4 and LiNiPO4).

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