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Suppressing Electrolyte Decomposition at Cathode/Electrolyte Interface by Mg-Fe Binary Oxide Coating towards Room-Temperature Magnesium Rechargeable Battery Operation (Supporting Information)

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Figshare2022-06-06 更新2026-04-28 收录
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https://figshare.com/articles/dataset/Suppressing_Electrolyte_Decomposition_at_Cathode_Electrolyte_Interface_by_Mg-Fe_Binary_Oxide_Coating_towards_Room-Temperature_Magnesium_Rechargeable_Battery_Operation_Supporting_Information_/19743361
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For practical room-temperature magnesium rechargeable battery operation, utilizing the nano-sized MgMn2O4 spinel as cathode material is effective way to have high rate-capabilities; however, electrolyte decomposition at the cathode/electrolyte interface is inevitable. In this work, a Mg-Fe binary oxide is coated onto nano-sized MgMn2O4 to form stable cathode electrolyte interface (CEI). This developed cathode material suppresses the electrolyte decomposition and improves the cyclability at room temperature.
创建时间:
2022-06-06
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