期刊文献+

硅-石墨/炭负极制备工艺对其性能的影响机制研究 被引量:3

Study on influencing mechanism of preparation technology for Si-graphite/carbon cathode material on its performance
下载PDF
导出
摘要 以马铃薯淀粉为炭源,制备硅-石墨/炭复合负极材料,研究复合材料中硅/石墨比例、负极片制备过程中粘结剂种类、调浆溶剂种类和pH值对材料电化学性能的影响,并对影响机理进行初步探讨,采用红外光谱法和扫描电镜分别对材料结构和形态进行表征,恒流充放电法测定材料的电化学性能。结果表明:当复合材料中硅/石墨比例为4∶8,羟甲基纤维素钠做粘结剂,pH=3的柠檬酸-氢氧化剂缓冲液做调浆溶剂时,复合材料经50次循环后可逆容量达到890mAh/g,容量保持率为95%,这是由于粘结剂和硅颗粒之间形成的酯键可使电极片在充放电过程中保持很好的完整性,从而显示出良好的电化学性能。 Si-graphite/carbon cathode materials were prepared using potato starch as carbon resource.The effects of Si/graphite ratio,kinds of binder and solvent and pH of solvent on the electrochemical performance of composite were studied,and the influencing mechanism was investigated further.Fourier transform infrared spectrometer and scanning electron microscopy were used to characterize the structure and morphology of composite,respectively.Eelectrochemical performances were studied by galvanostatic charge-discharge method.The results indicated that a high capacity of 890mAh/g of the cathode materials was achieved after 50 cycles when Si/graphite ratio in composite was 4∶8,carboxymethyl cellulose(CMC)was as binder,and citric acid and KOH buffer solution at pH 3was as solvent.The ester bond formed between Si particles and CMC played an important role in maintained the integrity of electrode during charge and discharge.
出处 《化工新型材料》 CAS CSCD 北大核心 2015年第10期126-128,131,共4页 New Chemical Materials
基金 国家自然科学基金(锂离子电池用具有空腔结构的Si/C复合负极材料的制备及储能机理研究 21203258) 中央高校基本科研业务费项目(锂离子电池负极材料多孔Li4Ti5O12的制备及性能研究 CQDXWL-2013-018)
关键词 锂离子电池 硅-石墨/炭负极材料 制备工艺 影响机制 Li-ion battery Si-graphite/carbon cathode material preparation technology influencing mechanism
  • 相关文献

参考文献17

  • 1屈超群,王玉慧,姜涛,别晓非.静电纺丝法制备Si/C复合负极材料及其性能表征[J].无机材料学报,2014,29(2):197-202. 被引量:7
  • 2Thackeray M M,Wolverton C,Isaacs E D.Electrical energy storage for transportation-approaching the limits of,and going beyond,lithium-ion batteries[J].Energy Environmental Sci- ence,2012,5(7):7854-7863. 被引量:1
  • 3Zhao X X,Rui X H,Zhou W W,et al.Growth of Si nanowires in porous carbon with enhanced cycling stability for Li-ion storage[J].Journal of Power Sources,2014,250:160-165. 被引量:1
  • 4Zhang M,Hou X H,Wang J,et al.Interweaved Si @ C/ CNTs&CNFs composites as anode materials for Li-ion batteries[J]..Journal of Alloys and Compounds,2014,588:206-211. 被引量:1
  • 5Ma X M,Liu M XfGan L H,et al.Novel mesoporous Si@C mi- crospheres as anodes for lithium-ion batteries[J].Physical Chemistry Chemical Physics,2014,16(9):4135-4142. 被引量:1
  • 6于晓磊,杨军,冯雪娇,高鹏飞,王久林,努丽燕娜.多孔硅/碳复合负极材料的制备及电化学性能[J].无机材料学报,2013,28(9):937-942. 被引量:9
  • 7彭鹏,刘宇,温兆银.锂离子电池Si/C/石墨复合负极材料的电化学性能[J].无机材料学报,2013,28(11):1195-1199. 被引量:8
  • 8Song T,Hu L B,Paik U.One-dimensional silicon nanostruc- tures for Li-ion batteries[J].Journal of Physical Chemistry Let- ters,2014,5(4):720-731. 被引量:1
  • 9Mcdowell M T,Lee S W,Ryu I,et al.Novel Size and Surface Oxide Effects in Silicon Nanowires as Lithium Battery Anodes[J].Nano Letters,2011,11(9):4018-4025. 被引量:1
  • 10Li M,Hou X H,Sha Y J,et al.Facile spray-drying/pyrolysis synthesis of core-shell structure graphite/silicon-porous carbon composite as a superior anode for Li-ion batteries[J].Journal of Power Sources,2014,248:721-728. 被引量:1

二级参考文献22

  • 1杜金雁,陈敬波,尚玉明,王要武,方谋,王雪,魏耀东.锂离子电池用Si/Ag复合材料的制备[J].化工进展,2012,31(S1):336-339. 被引量:2
  • 2谭艳,唐元洪,裴立宅,陈扬文.硅纳米线拉曼光谱的研究[J].光谱学与光谱分析,2007,27(4):725-729. 被引量:5
  • 3Ng See-How, Wang Jiazhao, Wexler David, et al. Highly reversible lithium storage in spheroidal carbon-coated silicon nanocomposites as anodes for lithium-ion batteries. Angew. Chem. lnt. Ed., 2006, 45(41): 6896-6899. 被引量:1
  • 4Simon Gerard K, Goswami Tarun. Improving anodes for lithium ion batteries. Metallurgical and Materials Transactions A, 2001, 42A: 231-238. 被引量:1
  • 5Kim Hyunjung, Hart Byunghee, Choo Jaebum, et al. qhree-dimensional porous silicon particles for use in high-performance lithium secondary batteries.Angew. Chem. lnt. Ed, 2008, 47(52): 10151-10154. 被引量:1
  • 6Ryu J H, Kim J W, Sung Y E, et aL Failure modes of silicon pow- der negative electrode in lithium secondary batteries. Electrochem. Solid State Lett., 2004,7 (10):A306-A309. 被引量:1
  • 7Liu Y, Hanai K, Yang J, et al. Morphology-stable silicon-based composite for Li-intercalation. Solid State lonics, 2004,168: 61-68. 被引量:1
  • 8Xue J S, Myrtle K, Dahn J R. An epoxy-silicane approach to pre- pare anode matrials for rechargeable lithium ion batteries. : Electrochem. Soc, 1995, 142(9):2927-2935. 被引量:1
  • 9Xing W, Wilson A M, Eguchi K, et al. Pyrolyzed polysiloxanes for use as anode materials in lithium-ion batteries. J. Electrochem. Soc., 1997, 144(7):2410-2416. 被引量:1
  • 10Yang J, Wang B F, Wang K, et al. Si/C composites for high capac- ity lithium storage materials. Electrochem. Solid State Lett., 2003, 6(8): A154-A156. 被引量:1

共引文献21

同被引文献28

引证文献3

二级引证文献5

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部