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首页> 外文期刊>Journal of power sources >Thin and flexible silicon anode based on integrated macroporous silicon film onto electrodeposited copper current collector
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Thin and flexible silicon anode based on integrated macroporous silicon film onto electrodeposited copper current collector

机译:基于在电沉积铜集电器上集成大孔硅膜的薄而柔软的硅阳极

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摘要

The integration of a macroporous Si (pSi) layer on an electrodeposited Cu current collector is proposed as a facile, low-cost and industrial-scalable procedure to elaborate efficient new anode material for lithium-ion batteries. The preparation process consists of ⅰ) formation of macropores on a Si wafer by electrochemical etching, ⅱ) chemical deposition of Cu NPs on microstructured Si, ⅲ) electroplating of a thick continuous Cu film, and ⅳ) peeling of pSi-Cu film. The anode device is flexible and presents a total thickness, comprising the current collector, of 25 um. SEM characterization shows the partial integration of the copper film inside the Si porous structure. Electrochemical impedance spectroscopy measurements showed this architecture enhances the electrical contact between the Cu current collector and the pSi due to the optimized interface of the two materials. A specific capacity of 1360 mAh g~(-1) in EC/DMC LiPF_6 1 M is achieved at low galvanostatic discharge current (0.2 A g~(-1)). Even during cycling at a high current density of 1.8 A g~(-1), the macroporous silicon anode was stable, demonstrating a specific capacity of 750 mAh g~(-1) twice as large as graphite based anodes.
机译:提出在电沉积铜集电器上集成大孔Si(pSi)层是一种简便,低成本且可在工业上扩展的程序,以开发用于锂离子电池的高效新型负极材料。制备过程包括:ⅰ)通过电化学蚀刻在硅片上形成大孔;,)在微结构化的硅上化学沉积铜纳米颗粒;ⅲ)电镀厚连续铜膜; continuous)剥离pSi-Cu膜。阳极装置是柔性的,并且包括集电器的总厚度为25μm。 SEM表征显示了Si多孔结构内的铜膜的部分整合。电化学阻抗谱测量表明,由于两种材料的优化界面,该体系结构增强了Cu集电器和pSi之间的电接触。在低恒电流放电电流(0.2 A g〜(-1))下,EC / DMC LiPF_6 1 M中的比容量为1360 mAh g〜(-1)。即使在以1.8 A g〜(-1)的高电流密度循环时,大孔硅阳极也很稳定,显示出750 mAh g〜(-1)的比容量是石墨基阳极的两倍。

著录项

  • 来源
    《Journal of power sources 》 |2013年第15期| 166-170| 共5页
  • 作者单位

    Croupe de Recherche En Materiaux, Microilectronique, Acoustique et Nanotechnologies (CREMAN), UMR 7347, Universite Francois Rabelais, Pare de Crandmont, 37200 Tours, France,Laboratoire de Physico-Chimie des Materiaux et des Electrolytes pour I'Energie (PCM2E), Universite Francois Rabelais, Pare de Crandmont, 37200 Tours, France;

    Croupe de Recherche En Materiaux, Microilectronique, Acoustique et Nanotechnologies (CREMAN), UMR 7347, Universite Francois Rabelais, Pare de Crandmont, 37200 Tours, France;

    Croupe de Recherche En Materiaux, Microilectronique, Acoustique et Nanotechnologies (CREMAN), UMR 7347, Universite Francois Rabelais, Pare de Crandmont, 37200 Tours, France;

    Croupe de Recherche En Materiaux, Microilectronique, Acoustique et Nanotechnologies (CREMAN), UMR 7347, Universite Francois Rabelais, Pare de Crandmont, 37200 Tours, France;

    Laboratoire de Physico-Chimie des Materiaux et des Electrolytes pour I'Energie (PCM2E), Universite Francois Rabelais, Pare de Crandmont, 37200 Tours, France;

    Laboratoire de Physico-Chimie des Materiaux et des Electrolytes pour I'Energie (PCM2E), Universite Francois Rabelais, Pare de Crandmont, 37200 Tours, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Macroporous silicon; Silicon anode; Lithium-ion batteries; Electrodeposition; Electroless deposition; Current collector;

    机译:大孔硅;硅阳极;锂离子电池;电沉积;化学沉积;集电器;

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