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首页> 外文期刊>Nanoscale >The role of titanium-deficient anatase TiO2 interlayers in boosting lithium-sulfur battery performance: polysulfide trapping, catalysis and enhanced lithium ion transport
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The role of titanium-deficient anatase TiO2 interlayers in boosting lithium-sulfur battery performance: polysulfide trapping, catalysis and enhanced lithium ion transport

机译:的角色titanium-deficient锐钛矿二氧化钛提高锂硫电池的夹层多硫化性能:捕获,催化和提高锂离子传输

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Despite the high theoretical energy density, lithium-sulfur (Li-S) batteries are currently facing two major problems, i.e., the shuttle of polysulfides and sluggish redox kinetics. Recent research has shown that electrocatalysts such as Pt and CoS2 can catalyze the polysulfide redox reaction and hence improve the kinetics and cycle performance of Li-S batteries. The current work demonstrates that a cheaper, lightweight and green alternative, i.e., titanium-deficient anatase TiO2 (TDAT) not only possesses a strong lithium polysulfide (LiPS) trapping ability via chemical interactions but also catalyzes the sulfur-sulfide redox reaction. Moreover, the TDAT-PE separator also shows high lithium conductivity, fast lithium diffusion, and facile lithium transference. As a result, the Li-S batteries with the TDAT modified PE interlayer show markedly higher sulfur utilization and capacity, rate and cycle performances. An average capacity fading of only 0.025% per cycle is achieved during the 1000 cycle durability test. This work presents a commercially viable, multifunctional interlayer capable of boosting the performance of Li-S batteries.
机译:尽管高理论能量密度,目前锂硫电池(Li-S)面临两个主要问题,即航天飞机的多硫化和氧化还原动力学缓慢。研究表明,electrocatalysts等Pt和CoS2可以催化聚硫氧化还原反应,因此提高动力学和周期Li-S电池的性能。表明一个便宜,轻量级和绿色选择,例如,titanium-deficient锐钛矿二氧化钛(TDAT)不仅拥有一个强大的多硫化锂(嘴唇)通过捕获能力而且催化化学交互sulfur-sulfide氧化还原反应。TDAT-PE分离器还显示高锂电导率、快速锂扩散和肤浅锂移情。电池TDAT改性PE层间明显地展示出了更高的硫利用率和能力、速度和循环性能。每循环容量衰减的只有0.025%在1000年实现循环耐久性试验。这项工作提供了一个商业上可行的,多功能夹层增加的能力Li-S电池的性能。

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