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·1048· 工程科学学报,第37卷,第8期 chem Solid State Lett,1999,2(11)547 id State Lett,2003,6(9):A198 [6]Sethuraman V A,Chon M J,Shimshak M,et al.In situ measure- [17]Kim J B,Lee H Y,Lee K S,et al.Fe/Si multi-ayer thin film ments of stress evolution in silicon thin films during electrochemi- anodes for lithium rechargeable thin film batteries.Electrochem cal lithiation and delithiation.J Poicer Sources,2010,195(15): Commun,2003,5(7):544 5062 [18]Takamura T,Ohara S,Uehara M,et al.A vacuum deposited Si 7]Dimov N,Kugino S,Yoshio M.Carbon-coated silicon as anode film having a Li extraction capacity over 2000 mAh/g with a long material for lithium ion batteries:advantages and limitations.Elec- eycle life.J Power Sources,2004,129(1):96 trochim Acta,2003,48(11):1579 19] Kovalenko I,Zdyrko B.Magasinski A,et al.A major constitu- [8]Beattie S D,Larcher D,Morerette M,et al.Si electrodes for ent of brown algae for use in high-capacity Li-ion batteries.Sci- Li-ion batteries:a new way to look at an old problem.J Electro- eme,2011,334(6052):75 chem Soc,2008,155(2):A158 120]Lestriez B,Bahri S,Sandu I,et al.On the binding mechanism Ding N.Xu J,Yao YX,et al.Improvement of cyclability of Si as of CMC in Si negative electrodes for Li-ion batteries.Electrochem anode for Li-ion batteries.J Power Sources,2009,192 (2):644 Commun,2007,9(12):2801 [10]Yamada M,Ueda A,Matsumoto K,et al.Silicon-based negative 21]Munao D,van Erven J W M,Valvo M,et al.Role of the binder electrode for high-eapacity lithium-ion batteries "Sio"-carbon on the failure mechanism of Si nano-composite electrodes for Li- composite.J Electrochem Soc,2011,158(4):A417 ion batteries.J Power Sources,2011,196(16):6695 [11]Szczech J R,Jin S.Nanostructured silicon for high capacity lithi- [22]Li H,Huang X J,Chen L Q,et al.The crystal structural evolu- um battery anodes.Energy Environ Sci,2011,4(1):56 tion of nano-Si anode caused by lithium insertion and extraction at [12]Liu W R,Guo ZZ,Young WS,et al.Effeet of eleetrode struc- room temperature.Solid State lonics,2000,135 (1-4):181 ture on performance of Si anode in Li-ion batteries:Si particle [23]Xu Y H,Yin G P,Ma Y L,et al.Nanosized core/shell size and conductive additive.J Power Sources,2005,140(1): silicon@carbon anode material for lithium ion batteries with poly- 139 vinylidene fluoride as carbon source.J Mater Chem,2010,20 [13]Holzapfel M,Buqa H,Hardwick L J,et al.Nano silicon for (16):3216 lithium-ion batteries.Electrochim Acta,2006,52(3):973 4]Wu X D,Wang Z X,Chen L Q,et al.Ag-enhanced SEl forma- [14]Nguyen S H,Lim JC,Lee J K.Electrochemical characteristics tion on Si particles for lithium batteries.Electrochem Commun, of bundle-type silicon nanorods as an anode material for lithium 2003,5(11):935 ion batteries.Electrochim Acta,2012,74:53 25]Du C Y,Gao C H,Yin G P,et al.Facile fabrication of a nanop- [15]Ohara S,Suzuki J,Sekine K,et al.A thin film silicon anode for orous silicon electrode with superior stability for lithium ion bat- Li-ion batteries having a very large specific capacity and long cy- teries.Energy Environ Sci,2011,4(3):1037 cle life.J Power Sources,2004,136(2):303 26]Guo Z P,Zhao Z W,Liu H K,et al.Electrochemical lithiation 6]Maranchi JP,Hepp A F,Kumta P N.High capacity,reversible and de-ithiation of MWNT-Sn/SnNi nanocomposites.Carbon, silicon thin-film anodes for lithium-ion batteries.Electrochem Sol- 2005,43(7):1392工程科学学报,第 37 卷,第 8 期 chem Solid State Lett,1999,2( 11) : 547 [6] Sethuraman V A,Chon M J,Shimshak M,et al. 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