Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1489102 | Materials Research Bulletin | 2013 | 5 Pages |
Self-supported multi-walled carbon nanotube (MWCNT)-embedded Si nanoparticle (NP) film electrodes for Li-ion rechargeable batteries have been prepared through chemical vapor deposition using acetylene gas and a facile spin coating process using commercial Si nanopowders. The void spaces between the MWCNTs were densely filled with a considerable amount of Si NPs with diameters of ∼50 nm. The MWCNT-embedded Si NP film electrodes showed improved cycling performance. These high electrochemical performances were ascribed to the roles of MWCNTs providing an efficient electron-transport path and alleviating severe volume change of Si NPs occurring during Li-alloying/de-alloying process.
Graphical abstractFigure optionsDownload full-size imageDownload as PowerPoint slideHighlights► Synthesis of MWCNT-embedded Si nanoparticle films via CVD and spin coating processes. ► Electrochemical evaluation of the MWCNT-embedded Si nanoparticle films for Li-ion battery electrodes. ► Beneficial effect of MWCNT network for the superior electrochemical performances.