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Binder-free three-dimensional silicon/carbon nanowire networks for high performance lithium-ion battery anodes

机译:用于高性能锂离子电池阳极的无粘结剂三维硅/碳纳米线网络

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The three-dimensional (3-D) nano-architectures have attracted tremendous attention for applications in lithium-ion (Li-ion) batteries due to their unique structural advantages. In this work, we developed a facile approach to fabricate 3-D Silicon (Si) nanowire networks. By precipitation, Si nanowires spontaneously interwove with one another to form 3-D nanowire networks with large amount of microano gaps, which can not only facilitate Li-ion transport but also effectively accommodate the volume change. Carbon coating was then applied on Si nanowire networks through a chemical vapor deposition (CVD) process, which not only mechanically strengthens the structure but also helps the formation of 3-D electrical conducting network. A Si/C nanowire network with a wire diameter of 75nm and 12wt% of carbon coating exhibits a very high specific capacity of 2300mAhg~(-1) at a rate of C/5 and a high specific capacity of around 600mAhg~(-1) at a high rate of 4.5C. Our experimental investigations showed that the cycle life of such Si/C nanowire network can be further prolonged by increasing the carbon coating content, decreasing the diameters of Si nanowires, or reducing the testing voltage window. A Si/C nanowire network with a wire diameter of 37nm and 17wt% carbon coating can retain 78% of the initial capacity after 60 cycles in a testing voltage window of 0.1-2V.
机译:三维(3-D)纳米结构因其独特的结构优势而在锂离子(Li-ion)电池中的应用引起了极大的关注。在这项工作中,我们开发了一种简便的方法来制造3-D硅(Si)纳米线网络。通过沉淀,Si纳米线相互自发形成具有大量微/纳米间隙的3-D纳米线网络,不仅可以促进锂离子的传输,而且可以有效地适应体积的变化。然后通过化学气相沉积(CVD)工艺将碳涂层施加到Si纳米线网络上,这不仅在机械上增强了结构,而且还有助于形成3-D导电网络。线径为75nm且含碳量为12wt%的Si / C纳米线网络以C / 5的速率表现出非常高的比容量2300mAhg〜(-1)和大约600mAhg〜(-1) )以4.5C的高速率进行。我们的实验研究表明,可以通过增加碳涂层含量,减小Si纳米线的直径或减小测试电压窗口来进一步延长此类Si / C纳米线网络的循环寿命。在0.1-2V的测试电压窗口中经过60个循环后,具有37nm线径和17wt%碳涂层的Si / C纳米线网络可以保留78%的初始容量。

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