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A green route to synthesize low-cost and high-performance hard carbon as promising sodium-ion battery anodes from sorghum stalk waste

机译:从高粱秆废料中合成低成本和高性能硬碳作为有前景的钠离子电池阳极的绿色途径

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Sodium-ion batteries (SIBs) have been considered to be potential candidates for next-generation low-cost energy storage systems due to the low-cost and abundance of Na resources. However, it is a big challenge to find suitable anode materials with low-cost and good performance for the application of SIBs. Hard carbon could be a promising anode material due to high capacity and expectable low-cost if originating from biomass. Herein, we report a hard carbon material derived from abundant and abandoned biomass of sorghum stalk through a simple carbonization method. The effects of carbonization temperature on microstructure and electrochemical performance are investigated. The hard carbon carbonized at 1300?°C delivers the best rate capability (172?mAh?g?1 at 200?mA?g?1) and good cycling performance (245?mAh?g?1 after 50 cycles at 20?mA?g?1, 96% capacity retention). This contribution provides a green route for transforming sorghum stalk waste into “treasure” of promising low-cost anode material for SIBs.
机译:由于钠资源的低成本和丰富,钠离子电池(SIB)被认为是下一代低成本能量存储系统的潜在候选者。然而,寻找适合SIB应用的低成本且性能良好的阳极材料是一个巨大的挑战。硬碳由于其高容量和低成本(如果源自生物质)可能是一种有希望的阳极材料。在本文中,我们报告了通过简单的碳化方法从高粱茎秆的大量生物质和废弃生物质中衍生出的硬碳材料。研究了碳化温度对组织和电化学性能的影响。在1300?C下碳化的硬碳具有最佳的倍率能力(200?mA?g ?1 时为172?mAh?g ?1 )和良好的循环性能(在20?mA?g ?1 ,保持96%容量后的50个循环后,达到245?mAh?g ?1 。这一贡献为将高粱秸秆废物转化为“珍惜”用于SIB的低成本阳极材料提供了一条绿色途径。

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