Synthesis of a cubane-like anion [Re4As2S2(CN)12]6− for coordinate regulation of Na+ ion transport†
Abstract
A cyanometallate cluster compound Na6[Re4As2S2(CN)12] (NRASCN) as a Na+ ionic conductor, has been synthesized by a simple solid-state synthetic route. The X-ray structural analysis shows that the structure contains a typical rhenium tetrahedron that is surrounded by the mixed ligands of μ3-As and μ3-S to form cubane-like cluster cores. The Na+ ions are well-distributed around cyanide groups and form a disordered sublattice spanning three and four Na crystallographic sites. The Na+ ionic conductor NRASCN exhibits a high ionic conductivity of 1.05 × 10−5 S cm−1 at 25 °C. Using the PEO–NaTFSI–NRASCN composite electrolyte, an all-solid-state battery with a Na metal anode and a NaVPO4 (NVP) cathode, shows a high specific capacity (109.4 mA h g−1) and stable long-term cycling performance (1000 cycles) at a rate of 0.3 C.