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In situ formation of hollow graphitic carbon nanospheres in electrospun amorphous carbon nanofibers for high-performance Li-based batteries

机译:高性能锂基电池电纺非晶碳纳米纤维中原位形成空心石墨碳纳米球

摘要

We report on in situ formation of hollow graphitic carbon nanospheres (HGCNs) in amorphous carbon nanofibers (ACNFs) by a combination of electrospinning, calcination and acid treatment. The prepared carbon nanofibers contain many HGCNs on which defects such as discontinuous graphene sheets with a large d-spacing in their wall exist and provide extra sites for Li+ storage and serve as buffers for withstanding large volume expansion and shrinkage during the Li insertion and extraction procedure. Furthermore, some exposed HGCNs on the surface of the ACNFs as well as hollow structures are favorable for lithium ion diffusion from different orientations and sufficient contact between active material and electrolyte. In addition, the high conductivity architectures facilitate collection and transport of electrons during the cycling process. As a result, the ACNFs/HGCNs display a high reversible specific gravimetric capacity of ∼750 mA h g-1 and volumetric capacity of ∼1.1 A h cm-3 with outstanding rate capability and good cycling stability, which is superior to those of carbon nanofibers (CNFs), carbon nanotubes (CNTs), porous ACNFs, graphene nanosheets (GNSs), GNSs/CNFs, hollow carbon nanospheres and graphite. The synthesis process is simple, low-cost and environmentally friendly, providing new avenues for the rational engineering of high-energy carbon-based anode materials.
机译:我们报告通过电纺,煅烧和酸处理的组合在无定形碳纳米纤维(ACNFs)中原位形成空心石墨碳纳米球(HGCNs)。制备的碳纳米纤维包含许多HGCN,在其上存在缺陷,例如壁上存在不连续的石墨烯片(具有大的d间距),并为Li +的存储提供了额外的位置,并充当了在Li插入和提取过程中承受大体积膨胀和收缩的缓冲剂。 。此外,ACNF表面上的一些裸露的HGCN和中空结构有利于锂离子从不同方向扩散以及活性材料与电解质之间的充分接触。另外,高电导率体系结构有助于在循环过程中收集和传输电子。结果,ACNFs / HGCNs表现出约750 mA h g-1的高可逆比重容量和约1.1 A h cm-3的体积容量,具有出色的速率能力和良好的循环稳定性,优于碳的那些。纳米纤维(CNF),碳纳米管(CNT),多孔ACNF,石墨烯纳米片(GNS),GNS / CNF,空心碳纳米球和石墨。合成过程简单,成本低廉,环境友好,为合理设计高能碳基负极材料提供了新途径。

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