English

Computational Investigation of Copper Phosphides as Conversion Anodes for Lithium-Ion Batteries

Materials Science 2020-06-29 v2

Abstract

Using first principles structure searching with density-functional theory (DFT) we identify a novel Fm3ˉmFm\bar{3}m phase of Cu2_2P and two low-lying metastable structures, an I4ˉ3dI\bar{4}3d--Cu3_3P phase, and a CmCm--Cu3_3P11_{11} phase. The computed pair distribution function of the novel CmCm--Cu3_3P11_{11} phase shows its structural similarity to the experimentally identified CmCm--Cu2_2P7_7 phase. The relative stability of all Cu--P phases at finite temperatures is determined by calculating the Gibbs free energy using vibrational effects from phonon modes at 0 K. From this, a finite-temperature convex hull is created, on which Fm3ˉmFm\bar{3}m--Cu2_2P is dynamically stable and the Cu3x_{3-x}P (x<1x < 1) defect phase Cmc21Cmc2_1--Cu8_8P3_3 remains metastable (within 20 meV/atom of the convex hull) across a temperature range from 0 K to 600 K. Both CuP2_2 and Cu3_3P exhibit theoretical gravimetric capacities higher than contemporary graphite anodes for Li-ion batteries; the predicted Cu2_2P phase has a theoretical gravimetric capacity of 508 mAh/g as a Li-ion battery electrode, greater than both Cu3_3P (363 mAh/g) and graphite (372 mAh/g). Cu2_2P is also predicted to be both non-magnetic and metallic, which should promote efficient electron transfer in the anode. Cu2_2P's favorable properties as a metallic, high-capacity material suggest its use as a future conversion anode for Li-ion batteries; with a volume expansion of 99% during complete cycling, Cu2_2P anodes could be more durable than other conversion anodes in the Cu--P system with volume expansions greater than 150%.

Keywords

Cite

@article{arxiv.2005.05375,
  title  = {Computational Investigation of Copper Phosphides as Conversion Anodes for Lithium-Ion Batteries},
  author = {Angela F. Harper and Matthew L. Evans and Andrew J. Morris},
  journal= {arXiv preprint arXiv:2005.05375},
  year   = {2020}
}

Comments

For associated data see https://github.com/harpaf13/data.copper-phosphides and https://doi.org/10.17863/CAM.52272