Enhanced Rate Capability of Polymer-Derived SiCN Anode Material for Electrochemical Storage of Lithium with 3-D Carbon Nanotube Network Dispersed in Nanoscale
Electrochemical performances of multi-walled carbon nanotubes (CNT)-SiCN composite have been investigated. The sample was synthesized by a simple ultrasonication assisted method combined with high-temperature pyrolysis and characterized by Fourier transfo
Electrochemical performances of multi-walled carbon nanotubes (CNT)-SiCN composite have been investigated. The sample was synthesized by a simple ultrasonication assisted method combined with high-temperature pyrolysis and characterized by Fourier transfo
Xu, CH、Zhang, JW、Zhou, J、Xin, X、Liu, ZP、Zhou, XB、Shen, L、Huang, Q、Wang, W
材料科学电化学工业
COMPOSITE ANODESION BATTERIESNEGATIVE ELECTRODESCERAMICSINSERTIONPERFORMANCEGRAPHITESIOC
Xu, CH,Zhang, JW,Zhou, J,Xin, X,Liu, ZP,Zhou, XB,Shen, L,Huang, Q,Wang, W.Enhanced Rate Capability of Polymer-Derived SiCN Anode Material for Electrochemical Storage of Lithium with 3-D Carbon Nanotube Network Dispersed in Nanoscale[EB/OL].(2017-04-06)[2025-06-04].https://chinaxiv.org/abs/201704.00064.点此复制
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