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Flexible anode materials for lithium-ion batteries derived from waste biomass-based carbon nanofibers: I. Effect of carbonization temperature

机译:用于衍生自废泡基碳纳米纤维的锂离子电池的柔性阳极材料:I。碳化温度的影响

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摘要

Carbon nanofibers (CNFs) with excellent electrochemical performance represent a novel class of carbon nanostructures for boosting electrochemical applications, especially sustainable electrochemical energy conversion and storage applications. This work builds on an earlier study where the CNFs were prepared from a waste biomass (walnut shells) using a relatively simple procedure of liquefying the biomass, and electrospinning and carbonizing the fibrils. We further improved the mass ratio of the liquefying process and investigated the effects of the high temperature carbonization process at 1000, 1500 and 2000 degrees C, and comprehensively characterized the morphology, structural properties, and specific surface area of walnut shell-derived CNFs; and their electrochemical performance was also investigated as electrode materials in Li-ion batteries. Results demonstrated that the CNF anode obtained at 1000 degrees C exhibits a high specific capacity up to 271.7 mA h g(-1) at 30 mA g(-1), good rate capacity (131.3 and 102.2 mA h g(-1) at 1 A g(-1) and 2 A g(-1), respectively), and excellent cycling performance (above 200 mA h g(-1) specific capacity without any capacity decay after 200 cycles at 100 mA g(-1)). The present work demonstrates the great potential for converting low-cost biomass to high-value carbon materials for applications in energy storage.
机译:具有优异的电化学性能的碳纳米纤维(CNFS)代表了一种用于升高电化学应用的新型碳纳米结构,尤其是可持续的电化学能量转换和储存应用。这项工作在早期的研究中建立了使用相对简单的液化生物质的方法制备CNF,以及静电纺丝和碳化原纤维的方法。我们进一步提高了液化过程的质量比,并研究了高温碳化过程在1000,1500和2000℃下的影响,并综合表征了核桃壳衍生的CNF的形态,结构性和比表面积;并且还在锂离子电池中作为电极材料研究了它们的电化学性能。结果证明,在1000℃下获得的CNF阳极在30mA g(-1),良好的速率容量(131.3和102.2 mA Hg(-1)时表现出高达271.7mA Hg(-1)的高度特定容量G(-1)和2Ag(-1),分别为2A,优异的循环性能(在100mA g(-1)时200次循环后没有任何容量衰减的特定容量。本作本作能够将低成本生物质转化为高价值碳材料的巨大潜力,以便在储能中的应用。

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  • 来源
    《RSC Advances》 |2018年第13期|共8页
  • 作者单位

    Southwest Forestry Univ Yunnan Prov Univ Key Lab Biomass Chem Refinery &

    Yunnan Prov Engn Lab Highly Efficient Utilizat Bi Yunnan Prov Int Joint Res Ctr Bioenergy Coll Mat Kunming 650224 Yunnan Peoples R China;

    Southwest Forestry Univ Yunnan Prov Univ Key Lab Biomass Chem Refinery &

    Yunnan Prov Engn Lab Highly Efficient Utilizat Bi Yunnan Prov Int Joint Res Ctr Bioenergy Coll Mat Kunming 650224 Yunnan Peoples R China;

    Southwest Forestry Univ Yunnan Prov Univ Key Lab Biomass Chem Refinery &

    Yunnan Prov Engn Lab Highly Efficient Utilizat Bi Yunnan Prov Int Joint Res Ctr Bioenergy Coll Mat Kunming 650224 Yunnan Peoples R China;

    Southwest Forestry Univ Yunnan Prov Univ Key Lab Biomass Chem Refinery &

    Yunnan Prov Engn Lab Highly Efficient Utilizat Bi Yunnan Prov Int Joint Res Ctr Bioenergy Coll Mat Kunming 650224 Yunnan Peoples R China;

    Southwest Forestry Univ Yunnan Prov Univ Key Lab Biomass Chem Refinery &

    Yunnan Prov Engn Lab Highly Efficient Utilizat Bi Yunnan Prov Int Joint Res Ctr Bioenergy Coll Mat Kunming 650224 Yunnan Peoples R China;

    Northeast Forestry Univ Coll Mat Sci &

    Engn Harbin 150040 Heilongjiang Peoples R China;

    Southwest Forestry Univ Yunnan Prov Univ Key Lab Biomass Chem Refinery &

    Yunnan Prov Engn Lab Highly Efficient Utilizat Bi Yunnan Prov Int Joint Res Ctr Bioenergy Coll Mat Kunming 650224 Yunnan Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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