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首页> 外文期刊>Angewandte Chemie >Triple-Shelled Manganese-Cobalt Oxide Hollow Dodecahedra with Highly Enhanced Performance for Rechargeable Alkaline Batteries
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Triple-Shelled Manganese-Cobalt Oxide Hollow Dodecahedra with Highly Enhanced Performance for Rechargeable Alkaline Batteries

机译:三重壳锰 - 钴氧化物中空十二型德拉,具有高度增强的可充电碱性电池的性能

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摘要

Precisely carving of multi-shelled manganese-cobalt oxide hollow dodecahedra (Co/Mn-HD) with shell number up to three is achieved by a controlled calcination of the Mn-doped zeolitic imidazolate framework ZIF-67 precursor (Co/Mn-ZIF). The unique multi-shelled and polycrystalline structure not only provides a very large electrochemically active surface area (EASA), but also enhances the structural stability of the material. The residual C and N in the final structures might aid stability and increase their conductivity. When used in alkaline rechargeable battery, the triple-shelled Co/Mn-HD exhibits high electrochemical performance, reversible capacity (331.94 mAh g(-1) at 1 Ag-1), rate performance (88 % of the capacity can be retained with a 20-fold increase in current density), and cycling stability (96 % retention over 2000 cycles).
机译:通过壳数高达三种壳体的多壳锰 - 钴氧化物中空十二烷(CO / MN-HD)通过受控的抗沸石咪唑酯框架ZIF-67前体(CO / MN-ZIF)来实现高达三个的壳数。 。 独特的多壳和多晶结构不仅提供了非常大的电化学活性表面积(EASA),而且还提高了材料的结构稳定性。 最终结构中的残留C和N可以辅助稳定性并提高其电导率。 当用于碱性可充电电池时,三壳CO / MN-HD具有高电化学性能,可逆容量(1AG-1的331.94mAhg(-1)),速率性能(88%的容量可以保留 电流密度增加20倍),循环稳定性(超过2000次循环96%的保留)。

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