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首页> 外文期刊>ACS applied materials & interfaces >Three-Dimensionally Reinforced Freestanding Cathode for High Energy Room-Temperature Sodium-Sulfur Batteries
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Three-Dimensionally Reinforced Freestanding Cathode for High Energy Room-Temperature Sodium-Sulfur Batteries

机译:三维增强的独立式阴极,用于高能量室温 - 硫磺电池

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Room-temperature sodium sulfur (RT Na S) battery cathodes suffer from poor conductivity, rapid dissolution of intermediate products, and potentially destructive volume change during cycling. The optimal way to minimize these problems could be a construction of a nanocomposite cathode scaffold combining different components selected for their particular functions. Here, we have combined the excellent electronic conductivity of reduced graphene oxide, polysulfide adsorption ability of the ultrafine manganese oxide nanocrystals, rapid ion/electron dissemination efficiency of nanosized sulfur, and outstanding mechanical stiffness and good electrical conductivity of Na alginate/polyaniline hybrid binder in a single electrode heterostructure. At 0.2 A g(-1), an RT Na-S battery containing the freestanding cathode delivers an initial specific cap acity of 631 mA h g(-1) By delivering a nominal discharge voltage of 1.81 V, our Na S batteries bestow a high specific energy of 737 W h kg-' at the 2nd cycle and 660 W h kg(-1) was retained after 50 cycles. The effect of the amount of electrolyte additive is also well demonstrated in this study. The electrode fabrication process provides a new approach to tailor the design and preparation of effective cathodes for the room-temperature sodium sulfur batteries.
机译:室温硫磺(RT NA S)电池阴极患有差的导电性,中间产物的快速溶解,循环过程中的潜在破坏性体积变化。最小化这些问题的最佳方式可以是组合为其特定功能的不同组分组合的纳米复合材料阴极支架的结构。这里,我们已经结合了石墨烯氧化物的优异电子电导率,超细氧化锰纳米晶体的多硫化物吸附能力,纳米硫的快速离子/电子传播效率,以及Na海藻酸盐/聚苯胺杂交粘合剂的出色机械刚度和良好的导电性单个电极异质结构。在0.2Ag(-1)时,含有自由型阴极的RT NA-S电池通过提供1.81 V的标称放电电压,提供了631 mA Hg(-1)的初始特定帽静脉,我们的Na S电池赋予高度在第2周期和660Wh kg(-1)的特定能量为737WH kg-'在50次循环后保留。电解质添加剂量的效果也在本研究中展示了很好。电极制造工艺提供了一种新的方法来定制设计和制备用于室温硫电池的有效阴极。

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