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首页> 外文期刊>Advanced Science >Conductivity and Pseudocapacitance Optimization of Bimetallic Antimony–Indium Sulfide Anodes for Sodium‐Ion Batteries with Favorable Kinetics
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Conductivity and Pseudocapacitance Optimization of Bimetallic Antimony–Indium Sulfide Anodes for Sodium‐Ion Batteries with Favorable Kinetics

机译:动力学良好的钠离子电池双金属锑-硫化铟阳极电导率和伪电容优化

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摘要

Metal sulfides show promise for use in alkali‐ion batteries because of their high theoretical capacities. However, their poor cycling stability and rate performance hinder their further development. To avoid these issues, In 2 S 3 into Sb 2 S 3 is introduced to improve its electrochemical properties by optimizing its crystal structure and sodium storage mechanism. A heterostructure composed of In 2 S 3 and Sb 2 S 3 shows a unique morphology of formicary microspheres, which provide abundant channels for fast transfer of sodium ions, large surface area for a high pseudocapacitance effect, and enough voids to relieve volume expansion. A sodium‐ion battery containing the bimetallic sulfide anode exhibits a high reversible capacity of 400 mA h g ?1 and long cycle life of about 1000 cycles. Similarly, a high capacity of ≈610 mA h g ?1 is achieved for a lithium‐ion battery containing the anode. During sodiation/desodiation, the synergistic effect of In 2 S 3 and Sb 2 S 3 enhances electronic conductivity and supports the host structure, preventing collapse. The cycling performance and rate performance of the In 2 S 3 –Sb 2 S 3 anode are further improved by wrapping the electrode with carbon nanotubes. Even at a high current density of 3.2 A g ?1 , this carbon composite structure still shows a capacity of about 355 mA h g ?1 .
机译:由于金属硫化物的理论容量高,因此有望在碱离子电池中使用。但是,它们差的循环稳定性和速率性能阻碍了它们的进一步发展。为了避免这些问题,将In 2 S 3引入Sb 2 S 3中,以通过优化其晶体结构和钠存储机制来改善其电化学性能。由In 2 S 3和Sb 2 S 3组成的异质结构表现出独特的甲酸微球形态,它为钠离子的快速转移提供了丰富的通道,为高假电容效应提供了较大的表面积,并提供了足够的空隙来缓解体积膨胀。包含双金属硫化物阳极的钠离子电池具有400 mA h g?1的高可逆容量,约1000次循环的长寿命。同样,对于包含阳极的锂离子电池,可实现约610 mA h g?1的高容量。在加盐/脱盐期间,In 2 S 3和Sb 2 S 3的协同作用增强了电子导电性并支撑了主体结构,从而防止了塌陷。通过用碳纳米管包裹电极,可以进一步提高In 2 S 3 -Sb 2 S 3阳极的循环性能和倍率性能。即使在3.2A g -1的高电流密度下,这种碳复合结构仍显示出约355 mA h g -1的容量。

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