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A charge-density-based general cation insertion algorithm for generating new Li-ion cathode materials
2020
npj Computational Materials
Future lithium (Li) energy storage technologies, in particular solid-state configurations with a Li metal anode, opens up the possibility of using cathode materials that do not necessarily contain Li in its as-made state. To accelerate the discovery and design of such materials, we develop a general, chemically, and structurally agnostic methodology for identifying the optimal Li sites in any crystalline material. For a given crystal structure, we attempt multiple Li insertions at symmetrically
doi:10.1038/s41524-020-00422-3
fatcat:ngrim7bydrdu7gvtc2j2uzsysa