Fast divalent conduction in MB12H12 center dot 12H(2)O (M = Zn, Mg) complex hydrides: effects of rapid crystal water exchange and application for solid-state electrolytes

JOURNAL OF MATERIALS CHEMISTRY A

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摘要
This work investigates the divalent conduction of Zn2+ and Mg2+ in hydrated closo-type complex hydrides MB12H12 center dot nH(2)O (M = Zn, Mg) and the effects of crystal water exchange in the structure for enhancing divalent ionic conduction. MB12H12 center dot nH(2)O (M = Zn, Mg), which exhibited different hydrous phases, was synthesised as a single phase and characterised using X-ray diffraction and Raman spectroscopy for determining the number of crystal water molecules and the cationic water coordination environment. Among the anhydrous and hydrated MB12H12 center dot nH(2)O (n = 0-12 and M = Zn, Mg), ZnB12H12 center dot 12H(2)O and MgB12H12 center dot 12H(2)O exhibited exceptional ionic conductivities of 3.8 x 10(-5) and 6.1 x 10(-5) S cm(-1) at 50 degrees C, respectively, thereby being of greater significance than less-hydrated MB12H12 center dot nH(2)O (n <= 6), and a few of the highest solid-state Zn2+ and Mg2+ conductivities reported so far. H-1, B-11, and Zn-67 NMR measurements show narrow peaks indicating rapid crystal water exchange, fast [B12H12](2-) anion rotation, and rapid Zn2+ isotropic motion in ZnB12H12 center dot 12H(2)O. Electrochemical cells fabricated using the ZnB12H12 center dot 12H(2)O solid electrolyte exhibited reversible Zn2+ migration through the material, indicating that ZnB12H12 center dot 12H(2)O shows favourable potential for application as a Zn2+ conductor in all-solid-state Zn batteries.
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