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High-capacity antimony sulphide nanoparticle-decorated graphene composite as anode for sodium-ion batteries

机译:高容量硫化锑纳米粒子修饰的石墨烯复合材料作为钠离子电池的负极

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Sodium-ion batteries are an alternative to lithium-ion batteries for large-scale applications. However, low capacity and poor rate capability of existing anodes are the main bottlenecks to future developments. Here we report a uniform coating of antimony sulphide ( stibnite ) on graphene, fabricated by a solution-based synthesis technique, as the anode material for sodium-ion batteries. It gives a high capacity of 730?mAh?g?1 at 50?mA?g?1, an excellent rate capability up to 6C and a good cycle performance. The promising performance is attributed to fast sodium ion diffusion from the small nanoparticles, and good electrical transport from the intimate contact between the active material and graphene, which also provides a template for anchoring the nanoparticles. We also demonstrate a battery with the stibnite –graphene composite that is free from sodium metal, having energy density up to 80?Wh?kg?1. The energy density could exceed that of some lithium-ion batteries with further optimization.
机译:在大规模应用中,钠离子电池是锂离子电池的替代品。然而,现有阳极的低容量和差的速率能力是未来发展的主要瓶颈。在这里,我们报告了一种石墨烯上的硫化锑(辉锑矿)均匀涂层,该涂层是通过基于溶液的合成技术制成的,作为钠离子电池的负极材料。它在50?mA?g ?1 时可提供730?mAh?g ?1 的高容量,高达6C的优异速率能力和良好的循环性能。有前途的性能归因于钠离子从小纳米颗粒快速扩散,以及活性材料和石墨烯之间紧密接触产生的良好电传输,这也为锚定纳米颗粒提供了模板。我们还演示了一种由辉石-石墨烯复合材料制成的不含钠金属的电池,其能量密度高达80?Wh?kg ?1 。如果进一步优化,其能量密度可能会超过某些锂离子电池。

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