Preparation and Characterization of Si ∕ C Composite Coated with Polyaniline as Novel Anodes for Li-Ion Batteries
暂无分享,去创建一个
Yang Liu | Yasuo Takeda | Nobuyuki Imanishi | Atsushi Hirano | N. Imanishi | A. Hirano | Y. Takeda | T. Ichikawa | Yang Liu | T. Matsumura | T. Matsumura | T. Ichikawa
[1] Yasuo Takeda,et al. Silicon/Carbon Composites as Anode Materials for Li-Ion Batteries , 2004 .
[2] Jingying Xie,et al. Si/C composites for high capacity lithium storage materials , 2003 .
[3] Xiao‐Qing Yang,et al. Structural studies of the new carbon-coated silicon anode materials using synchrotron-based in situ XRD , 2002 .
[4] P. Kumta,et al. Si / TiN Nanocomposites Novel Anode Materials for Li ‐ Ion Batteries , 1999 .
[5] M. Yoshio,et al. Carbon-coated silicon as anode material for lithium ion batteries: advantages and limitations , 2003 .
[6] Nikolay Dimov,et al. Mixed silicon–graphite composites as anode material for lithium ion batteries: Influence of preparation conditions on the properties of the material , 2004 .
[7] Hansu Kim,et al. The Insertion Mechanism of Lithium into Mg2Si Anode Material for Li‐Ion Batteries , 1999 .
[8] Z. Wen,et al. High capacity silicon/carbon composite anode materials for lithium ion batteries , 2003 .
[9] T. D. Hatchard,et al. Reaction of Li with Alloy Thin Films Studied by In Situ AFM , 2003 .
[10] Jung-Ho Ahn,et al. Nanostructured Si–C composite anodes for lithium-ion batteries , 2004 .
[11] P. Kumta,et al. Nanostructured Si / TiB2 Composite Anodes for Li-Ion Batteries , 2003 .
[12] N. Imanishi,et al. Novel Composites Based on Ultrafine Silicon, Carbonaceous Matrix, and the Introduced Co-Milling Components as Anode Host Materials for Li-Ion Batteries , 2004 .
[13] J. Dahn,et al. Lithium insertion in pyrolyzed siloxane polymers , 1994 .
[14] H. X. Yang,et al. Carbon/Ba–Fe–Si alloy composite as high capacity anode materials for Li-ion batteries , 2003 .
[15] J. Dahn,et al. Mechanically Alloyed Sn‐Fe(‐C) Powders as Anode Materials for Li‐Ion Batteries: I. The Sn2Fe ‐ C System , 1999 .
[16] H. X. Yang,et al. Structural and electrochemical characterization of Fe–Si/C composite anodes for Li-ion batteries synthesized by mechanical alloying , 2004 .
[17] P. Kumta,et al. High capacity Si/C nanocomposite anodes for Li-ion batteries , 2004 .
[18] J. Joo,et al. Characterization of highly conducting lithium salt doped polyaniline films prepared from polymer solution , 2001 .
[19] Liquan Chen,et al. The crystal structural evolution of nano-Si anode caused by lithium insertion and extraction at room temperature , 2000 .
[20] J. Dahn,et al. Active/Inactive Nanocomposites as Anodes for Li ‐ Ion Batteries , 1999 .
[21] J. Dahn,et al. Pyrolyzed Polysiloxanes for Use as Anode Materials in Lithium‐Ion Batteries , 1997 .
[22] Young-Il Jang,et al. Electrochemically-driven solid-state amorphization in lithium-silicon alloys and implications for lithium storage , 2003 .
[23] Jeff Dahn,et al. Lithium Insertion in Carbons Containing Nanodispersed Silicon , 1995 .
[24] T. Inagaki,et al. Sintering behavior of Ln-doped ceria compounds containing gallia , 2002 .
[25] P. Kumta,et al. Si–SiC nanocomposite anodes synthesized using high-energy mechanical milling , 2004 .
[26] N. Imanishi,et al. Morphology-stable silicon-based composite for Li-intercalation , 2004 .
[27] F. E. Little,et al. Electrochemical performance of lithium ion battery, nano-silicon-based, disordered carbon composite anodes with different microstructures , 2004 .
[28] H. Lee,et al. Graphite–FeSi alloy composites as anode materials for rechargeable lithium batteries , 2002 .