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Apple-Biowaste-Derived Hard Carbon as a Powerful Anode Material for Na-Ion Batteries

机译:苹果生物废物衍生的硬碳,可作为钠离子电池的强大负极材料

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Modern industrial agriculture is strongly influenced by product norms and standards, resulting in massive amounts of fresh fruit that is left in the field or wasted in spite of their good nutritional value. Herein, we present the synthesis of hard carbon from natural apple biowaste, and its use of biomass is a suitable strategy for the development of cheap and powerful carbon-based active materials for Na-ion batteries. The hard carbon exhibits a good rate capability [112mAhg(-1) at 5C (1Ag(-1))], excellent long-term cycling stability (1000 cycles at 5C), and high specific capacity (245mAhg(-1) at 0.1C) with full retention after 80 cycles. The full capacity (250mAhg(-1)) of the hard carbon is also obtained in Na-ion cells by using the layered P2-type NaxNi0.22Co0.11Mn0.66O2 cathode. The good electrochemical performance as well as the low cost and environmental friendliness of the apple-biowaste-derived hard carbon proves its suitability for future Na-ion batteries.
机译:现代工业农业受到产品规范和标准的强烈影响,尽管有良好的营养价值,但仍有大量新鲜水果留在田间或浪费掉。在这里,我们介绍了从天然苹果生物废料中合成硬碳的方法,其生物质的利用是开发廉价,功能强大的Na离子电池碳基活性材料的合适策略。硬碳具有良好的速率能力[在5C(1Ag(-1))下为112mAhg(-1)],出色的长期循环稳定性(在5C下为1000次循环)和高比容量(在0.1C下为245mAhg(-1)) C)80个循环后完全保留。通过使用分层的P2型NaxNi0.22Co0.11Mn0.66O2阴极,在Na离子电池中也可以获得硬碳的全部容量(250mAhg(-1))。苹果生物饮料的硬质碳的良好电化学性能以及低成本和环境友好性证明了其适用于未来的Na离子电池。

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