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首页> 外文期刊>Angewandte Chemie >Synthesis of Cobalt Sulfide Multi-shelled Nanoboxes with Precisely Controlled Two to Five Shells for Sodium-Ion Batteries
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Synthesis of Cobalt Sulfide Multi-shelled Nanoboxes with Precisely Controlled Two to Five Shells for Sodium-Ion Batteries

机译:用精确控制的硫化钴多壳纳米氧氧氧氧氧化钴用于钠离子电池的精确控制

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摘要

We report the synthesis of cobalt sulfide multi-shelled nanoboxes through metal-organic framework (MOF)-based complex anion conversion and exchange processes. The polyvanadate ions react with cobalt-based zeolitic imidazolate framework-67 (ZIF-67) nanocubes to form ZIF-67/cobalt polyvanadate yolk-shelled particles. The as-formed yolk-shelled particles are gradually converted into cobalt divanadate multi-shelled nanoboxes by solvothermal treatment. The number of shells can be easily controlled from 2 to 5 by varying the temperature. Finally, cobalt sulfide multi-shelled nanoboxes are produced through ion-exchange with S2- ions and subsequent annealing. The as-obtained cobalt sulfide multi-shelled nanoboxes exhibit enhanced sodium-storage properties when evaluated as anodes for sodium-ion batteries. For example, a high specific capacity of 438 mAhg(-1) can be retained after 100 cycles at the current density of 500 mAg(-1).
机译:我们通过金属 - 有机框架(MOF)报道了通过金属 - 有机骨架(MOF)的复杂阴离子转化和交换过程合成硫化钴多壳纳米氧化物。 聚钒酸盐离子与钴基沸石咪唑酯框架-67(ZIF-67)纳米酮反应,形成ZIF-67 /钴聚钒酸盐蛋白脱脂颗粒。 通过溶剂处理逐渐转化为组成的蛋白壳壳颗粒逐渐转化为钴二烷基酯的多壳纳米氧化物。 通过改变温度,可以容易地从2到5控制壳的数量。 最后,通过与S2-离子和随后的退火产生钴硫化物多壳纳米氧化物。 当评估为钠离子电池时,AS获得的硫化钴多壳纳米氧化剂表现出增强的钠储存性能。 例如,在电流密度为500mag(-1)的100次循环之后,可以保留438mAhg(-1)的高比容量。

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