Superionic lithium transport via multiple coordination environments defined by two-anion packing.
basic_science · Level V
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- Record sourced from PubMed, PMID 38359130.
- Also identified by DOI 10.1126/science.adh5115.
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Abstract
Fast cation transport in solids underpins energy storage. Materials design has focused on structures that can define transport pathways with minimal cation coordination change, restricting attention to a small part of chemical space. Motivated by the greater structural diversity of binary intermetallics than that of the metallic elements, we used two anions to build a pathway for three-dimensional superionic lithium ion conductivity that exploits multiple cation coordination environments. Li<sub>7</sub>Si<sub>2</sub>S<sub>7</sub>I is a pure lithium ion conductor created by an ordering of sulphide and iodide that combines elements of hexagonal and cubic close-packing analogously to the structure of NiZr. The resulting diverse network of lithium positions with distinct geometries and anion coordination chemistries affords low barriers to transport, opening a large structural space for high cation conductivity.