本文以纳米Si为原料,通过溶胶-凝胶法,采用不同的煅烧温度,合成了在Si颗粒表面包覆Li4Ti5O12的复合结构材料作为锂离子电池负极材料.结合采用XRD、SEM、TEM、HRTEM和EDS等材料结构分析方法和对合成材料的首次库仑效率、循环稳定性及CV曲线的测试分析,研究了凝胶煅烧温度对合成材料的结构和电化学性能的影响,探讨了Li4Ti5O12的引入对改善Si负极材料循环性能的作用.研究结果表明,在600-800℃的煅烧温度下,溶胶-凝胶过程的产物主要为Li4Ti5O12,产物中Si保持其初始的晶体结构和颗粒特征.提高煅烧温度至1000℃,产物中出现相当量的杂相,大大降低了材料的容量.Si/Li4Ti5O12材料的首次充放电容量随煅烧温度的升高呈现先升高后又下降的变化,并在700℃获得最大值.Li4Ti5O12的引入较明显地改善了Si负极材料的循环稳定性.
参考文献
[1] | Yoshiyuki Kubota;Mary Clare Sison Escafio;Hiroshi Nakanishi .Electronic structure of LiSi[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2008(1/2):151-157. |
[2] | Li J;Dahn JR .An in situ X-ray diffraction study of the reaction of Li with crystalline Si[J].Journal of the Electrochemical Society,2007(3):A156-A161. |
[3] | Polycrystalline SnO_2 nanowires coated with amorphous carbon nanotube as anode material for lithium ion batteries[J].Materials Letters,2010(8):972. |
[4] | Xiang, JY;Tu, JP;Huang, XH;Yang, YZ .A comparison of anodically grown CuO nanotube film and Cu2O film as anodes for lithium ion batteries[J].Journal of solid state electrochemistry,2008(7/8):941-945. |
[5] | 王蔚,曹高劭,叶静雅,赵新兵.Li_4Ti_5O_(12)/(Ag+C)极材料的固相合成及电化学性能[J].无机化学学报,2009(12):2151-2155. |
[6] | X. H. Huang;J. P. Tu;X. H. Xia;X. L. Wang;J.Y. Xiang;L. Zhang;Y. Zhou .Morphology Effect On The Electrochemical Performance Of Nio Films As Anodes For Lithium Ion Batteries[J].Journal of Power Sources,2009(2):588-591. |
[7] | K. Amezawa;N. Yamamoto;Y. Tomii;Y. Ito .Single-electrode Peltier heats of Li-Si alloy electrodes in LiCl-KCl eutectic melt[J].Journal of the Electrochemical Society,1998(6):1986-1993. |
[8] | Martin Winter;Jurgen O. Besenhard .Electrochemical lithiation of tin and tin-based intermetallics and composites[J].Electrochimica Acta,1999(1/2):31-50. |
[9] | Zhou, S;Liu, XH;Wang, DW .Si/TiSi2 Heteronanostructures as High-Capacity Anode Material for Li Ion Batteries[J].Nano letters,2010(3):860-863. |
[10] | Park MS;Kang YM;Rajendran S;Kwon HS;Lee JY .Si-Ni-Carbon composite synthesized using high energy mechanical milling for use as an anode in lithium ion batteries[J].Materials Chemistry and Physics,2006(2/3):496-502. |
[11] | Liwen Ji;Xiangwu Zhang .Fabrication of porous carbon/Si composite nanofibers as high-capacity battery electrodes[J].Electrochemistry communications,2009(6):1146-1149. |
[12] | Cui, LF;Yang, Y;Hsu, CM;Cui, Y .Carbon-Silicon Core-Shell Nanowires as High Capacity Electrode for Lithium Ion Batteries[J].Nano letters,2009(9):3370-3374. |
[13] | 刘鸿鹏,乔文明,詹亮,凌立成.原位生长纳米炭纤维/硅复合材料及其储锂性能[J].新型炭材料,2009(02):124-130. |
[14] | Ma, H;Cheng, F;Chen, J;Zhao, J;Li, C;Tao, Z;Liang, J .Nest-like silicon nanospheres for high-capacity lithium storage[J].Advanced Materials,2007(22):4067-4070. |
[15] | Candace K. Chan;Riccardo Ruffo;Seung Sae Hong;Robert A. Huggins;Yi Cui .Structural and electrochemical study of the reaction of lithium with silicon nanowires[J].Journal of Power Sources,2009(1):34-39. |
[16] | T. Zhang;H. P. Zhang;L. C. Yang;B. Wang;Y. P. Wu;T. Takamura .The structural evolution and lithiation behavior of vacuum-deposited Si film with high reversible capacity[J].Electrochimica Acta,2008(18):5660-5664. |
[17] | Chen, LB;Xie, JY;Yu, HC;Wang, TH .An amorphous Si thin film anode with high capacity and long cycling life for lithium ion batteries[J].Journal of Applied Electrochemistry,2009(8):1157-1162. |
[18] | Shen CM.;Zhang XG.;Zhou YK.;Li HL. .Preparation and characterization of nanocrystalline Li4Ti5O12 by sol-gel method[J].Materials Chemistry and Physics,2003(2):437-441. |
[19] | D. Peramunage;K. M. Abraham .Preparation of micron-sized Li{sub}4Ti{sub}5O{sub}12 and its electrochemistry in polyacrylonitrile electrolyte-based lithium cells[J].Journal of the Electrochemical Society,1998(8):2609-2615. |
[20] | Ohzuku T.;Yamamoto N.;Ueda A. .ZERO-STRAIN INSERTION MATERIAL OF LI[LI1/3TI5/3]O-4 FOR RECHARGEABLE LITHIUM CELLS[J].Journal of the Electrochemical Society,1995(5):1431-1435. |
[21] | M. N. Obrovac;Leif Christensen .Structural Changes in Silicon Anodes during Lithium Insertion/Extraction[J].Electrochemical and solid-state letters,2004(5):A93-A96. |
[22] | Obrovac MN;Krause LJ .Reversible cycling of crystalline silicon powder[J].Journal of the Electrochemical Society,2007(2):A103-A108. |
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