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A long life sodium-selenium cathode by encapsulating selenium into N-doped interconnected carbon aerogels

机译:长寿sodium-selenium阴极封装硒转化为n型相互连接的碳气凝胶

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摘要

Selenium cathodes have attracted a great deal of attention due to their much higher electronic conductivity compared to sulfur cathodes and similar volumetric capacity to them. However, selenium cathodes still suffer from rapid capacity fading because of low utilization of active materials, high volume changes and the shuttle effect of polyselenides. Herein, we prepared selenium-carbon aerogel composites as cathodes for sodium-selenium batteries by infiltrating selenium into the microporous structure of N-doped interconnected carbon aerogels (Se@NCAs). The carbon matrix could effectively accommodate the volume change of Se during cycling and alleviate the shuttle effect of polyselenides. The Se@NCA cathode exhibits an excellent discharge capacity (600 mA h g(-1) after 50 cycles at 0.1 A g(-1)) and a superior rate capability (430 mA h g(-1) at 2 A g(-1)) for Na-Se batteries. In addition, it also shows a superior long cycling life of 407 mA h g(-1) at a current density of 0.5 A g(-1) after 800 cycles with only 0.04% capacity decline per cycle.
机译:硒阴极吸引了大量的注意由于更高的电子电导率与硫阴极相似的体积容量。硒阴极仍然遭受快速因为低利用率的能力减弱活跃材料、高容量和变化航天飞机polyselenides的效果。准备selenium-carbon气凝胶复合材料sodium-selenium电池阴极浸润硒进入微孔n型结构相互连接的碳气凝胶(Se@NCAs)。有效地容纳的体积变化在自行车和减轻飞船的效果polyselenides。良好的放电容量(600毫安h g (1)后50周期为0.1 g(1))和优越速度能力(430毫安h g(1)在2 g (1))Na-Se电池。优越的循环寿命长马407 h g (1)电流密度为0.5 g(1) 800年以后周期每周期只有0.04%的能力下降。

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