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首页> 外文期刊>Nanotechnology >A novel free-standing metal organic frameworks-derived cobalt sulfide polyhedron array for shuttle effect suppressive lithium-sulfur batteries
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A novel free-standing metal organic frameworks-derived cobalt sulfide polyhedron array for shuttle effect suppressive lithium-sulfur batteries

机译:一种新型独立式金属有机框架衍生硫化钴多面体阵列,用于穿梭效应抑制锂硫电池

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摘要

Metal-organic-frameworks-derived nanostructures have received broad attention for secondary batteries. However, many strategies focus on the preparation of dispersive materials, which need complicated steps and some additives for making electrodes of batteries. Here, we develop a novel free-standing Co9S8 polyhedron array derived from ZIF-67, which grows on a three-dimensional carbon cloth for lithium-sulfur (Li-S) battery. The polar Co9S8 provides strong chemical binding to immobilize polysulfides, which enables efficiently suppressing of the shuttle effect. The free-standing S@Co9S8 polyhedron array-based cathode exhibits ultrahigh capacity of 1079 mAh g(-1) after cycling 100 times at 0.1 C, and long cycling life of 500 cycles at 1 C, recoverable rate-performance and good temperature tolerance. Furthermore, the adsorption energies towards polysulfides are investigated by using density functional theory calculations, which display a strong binding with polysulfides.
机译:金属有机骨架衍生的纳米结构在二次电池中受到广泛关注。然而,许多策略侧重于分散材料的制备,这需要复杂的步骤和一些添加剂来制造电池电极。在这里,我们开发了一种源自 ZIF-67 的新型独立式 Co9S8 多面体阵列,该阵列生长在锂硫 (Li-S) 电池的三维碳布上。极性Co9S8提供强大的化学结合力来固定多硫化物,从而有效地抑制穿梭效应。独立式S@Co9S8多面体阵列正极在0.1 C下循环100次后具有1079 mAh g(-1)的超高容量,在1 C下循环寿命长达500次,具有可恢复的倍率性能和良好的耐温性。此外,利用密度泛函理论计算研究了多硫化物的吸附能,结果表明与多硫化物具有很强的结合力。

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