4.8 Article

Structural, Chemical, and Dynamical Frustration: Origins of Superionic Conductivity in closo-Borate Solid Electrolytes

Journal

CHEMISTRY OF MATERIALS
Volume 29, Issue 21, Pages 9142-9153

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.chemmater.7b02902

Keywords

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Funding

  1. U.S. Department of Energy at Lawrence Livermore National Laboratory (LLNL) [DE-AC52-07NA27344]
  2. Laboratory Directed Research and Development Grant [15-ERD-022]
  3. DOE's National Nuclear Security Administration [DE-NA0003525]

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Li2B12B12, Na2B12H12, and their c/oso-borate relatives exhibit unusually high ionic conductivity, making them attractive as a new class of candidate electrolytes in solid-state Li- and Na-ion batteries. However, further optimization of these materials requires a deeper understanding of the fundamental mechanisms underlying ultrafast ion conduction. To this end, we use ab initio molecular dynamics simulations and density-functional calculations to explore the motivations for cation diffusion. We find that superionic behavior in Li2B12H12 and Na2B12H12 results from a combination of key structural, chemical, and dynamical factors that introduce intrinsic frustration and disorder. A statistical metric is used to show that the structures exhibit a high density of accessible interstitial sites and site types, which correlates with the flatness of the energy landscape and the observed cation mobility. Furthermore, cations are found to dock to specific anion sites, leading to a competition between the geometric symmetry of the anion and the symmetry of the lattice itself, which can facilitate cation hopping. Finally, facile anion reorientations and other low-frequency thermal vibrations lead to fluctuations in the local potential that enhance cation mobility by creating a local driving force for hopping. We discuss the relevance of each factor for developing new ionic conductivity descriptors that can be used for discovery and optimization of c/oso-borate solid electrolytes, as well as superionic conductors more generally.

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