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Synergistic Ionicity and Phase Regulation Enable Ultrahigh Potassium-Ion Conductivity in KxMg(1+x)/3Sb(2-x)/3O2
Xinyi Kong1, Yingying Wu1, Xingyu Li1
1College of Materials Science and Engineering, Hunan Joint International Laboratory of Advanced Materials and Technology of Clean Energy, Hunan University, Changsha410082, P. R. China.
None:
Although layered tellurates show high sodium-ion conductivities, their potassium analogs exhibit a low conductivity of ∼0.0016 mS cm-1 at room temperature. Herein, by synergetic ionicity and phase regulation, we fabricated layered potassium antimonates (KxMg(1+x)/3Sb(2-x)/3O2) of ionic conductivity about 2 orders of magnitude higher than tellurates. Unlike Te-O bonds in K2Mg2TeO6, Sb-O bonds in the antimonate system are predominantly ionic, causing weak interactions with K+ ions and low activation energies for K-ion migration. P2 and P3 phases of KxMg(1+x)/3Sb(2-x)/3O2 exhibit distinct K-ion conductivities, governed by the K stoichiometry and sintering temperature. Consequently, the K0.59Mg0.53Sb0.47O2 sample prepared at 1025 °C delivers the highest K-ion conductivity of 0.101 mS cm-1 at room temperature, a value comparable to that of potassium-containing sulfides. This solid electrolyte demonstrates high reversibility and structural stability upon exposure to humid air, good electrochemical compatibility with K anodes, and holds promise for application in solid-state potassium batteries.
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