期刊文献+

葡萄糖酸亚铁原位碳化LiFePO4/C的制备及电化学性能研究 被引量:4

In-situ carbonation synthesis of LiFePO_4/C and its electrochemical properties with ferrous gluconate
在线阅读 下载PDF
导出
摘要 以葡萄糖酸亚铁为碳源和部分铁源,采用固相法制备了LiFePO4/C复合正极材料。利用XRD和SEM对所得样品进行了结构与形貌表征。以LiFePO4/C作锂二次电池正极组装电池,用电化学工作站和充放电测试系统对样品进行电化学性能测试。当碳包覆量为4.75%,650℃烧结10h时所制备的LiFePO4/C复合材料在0.1、0.2和1C倍率下最高放电比容量分别为161.6、147.2和123.3mAh/g。1C倍率下经50次循环材料的放电比容量无衰减。实验结果表明,由于葡萄糖酸根和铁离子之间较强的化学键,阻止了葡萄糖酸根热解过程中在材料内部的不均匀扩散,其热解后在材料颗粒表面形成均匀导电碳层,并在颗粒之间形成丝状无定形碳,有效抑制了晶粒的生长,提高了活性物质利用率,形成了完整的导电网络,增强了材料的综合电化学性能。 LiFePO4/C composite materials were prepared by solid-state reaction with ferrous gluconate as carbon source and partial iron source. The structure and morphology of sample materials were characterized by X-ray diffraction and scanning electromicro scopy. The electrochemical performances of composites were measured by electrochemical workstation and charge-discharge test system. The highest discharge capacity of LiFePO4/C composite with 4.75% carbon coating sintered at 650℃ for 10h was 161.6, 147.2 and 123.3mAh/g at 0.1, 0.2 and 1C rate, respectively. There was no fade of discharge capacity after being charge-discharge for 50 cycles at 1C rate. The results showed that due to the strong chemical bonds between gluconate and iron ions, a uniform layer of carbon film was formed on the surface of particles and some filamentous amorphous carbon was formed between the particles after sintering. The particle growth was inhibited during sintering and a complete conduc- tive network was formed due to the effective carbon coating, hence the utilization of active materials was im- proved and the electrochemical properties were enhanced.
出处 《功能材料》 EI CAS CSCD 北大核心 2013年第19期2819-2824,共6页 Journal of Functional Materials
基金 国家自然科学基金资助项目(51203041) 留学归国人员科研启动基金资助项目(第43批) 河北省人社厅留学人员科研启动资助项目(201206)
关键词 锂二次电池 LIFEPO4 C 固相反应法 葡萄糖酸亚铁 lithium secondary battery LiFePO4/C solid-state reaction ferrous gluconate
  • 相关文献

参考文献3

二级参考文献51

  • 1雷敏,应皆荣,姜长印,万春荣.高密度球形LiFePO_4的合成及性能[J].电源技术,2006,30(1):11-13. 被引量:45
  • 2刘素琴,龚本利,黄可龙,张戈,李世彩.新型碳热还原法制备LiFePO_4/C复合材料及其性能研究[J].无机材料学报,2007,22(2):283-286. 被引量:18
  • 3Yang H, Amiruddin S, Bang H, et al. [J]. Industrial and Engineering Chemistry, 2006,12 : 12-38.
  • 4Yang H ,Shen X. [J]. Journal of Power Sources,2007,167 (2) :515-519.
  • 5Andersson A S,Kalska B, Haggstrom L,et al. [J]. Solid State Ionics,2000,130(1-2) :41-52.
  • 6Thuckeray M. [J]. Nature Mater, 2002,2 : 81-82.
  • 7Huang H, Yin S C, Nazarz L F. [J]. Electrochemical and Solid-State Letters, 2001,4 (10) : 170-172.
  • 8Park K S, Son J T, Chung H T, et al. [J]. Solid State Communications, 2004,129 ( 5 ) : 311-314.
  • 9Chung S Y,Bloking J T,Chiang Y M. [J]. Nature Materials, 2002,1 (2) : 123-128.
  • 10Choi D, Kumta P N. [J]. Journal of Power Sources, 2007, 163(2) :1064-1069.

共引文献40

同被引文献39

  • 1王少光,武书彬,郭秀强,郭伊丽.玉米秸秆木素的化学结构及热解特性[J].华南理工大学学报(自然科学版),2006,34(3):39-42. 被引量:28
  • 2曹国良,张小曳,王亚强,郑方成.中国区域农田秸秆露天焚烧排放量的估算[J].科学通报,2007,52(15):1826-1831. 被引量:142
  • 3周建斌,邓丛静,陈金林,等.玉米秸秆炭化产物的性能及其应用[J].东北林业大学学报,2001,6(7):2367-2372.
  • 4Oliveira I, Blohse D, Ramke H G. Hydrothermal Carbonization of Agricultural Residues [J]. Bioresour. Technol., 2013, 142: 138-146.
  • 5A1-Wabel M I, A1-Omran A, E1-Naggar A H, et al. Pyrolysis Temperature Induced Changes in Characteristics and Chemical Composition of Biochar Produced from Conocarpus Wasters [J]. Bioresour. Technol., 2013, 131: 374-379.
  • 6Wiliams C J, Aderhold D, Edyvean R G J. Comparison between Biosorbents for the Removal of Mental Ions from Aqueous Solutions [J]. Water Res., 1998, 31(1): 216-224.
  • 7ISO 8288:1986. Water Quality--Determination of Cobalt, Nickel, Copper, Zinc, Cadmium and Lead--Flame Atomic Absorption Spectrometric Methods [S]. 1986.
  • 8Ahmad M, Lee S S, Oh S E, et al. Modeling Adsorption Kinetics of Trichloroethylene onto Biochars Derived from Soybean Stover and Peanut Shell Wasters [J]. Environ. Sci. Poll. Res., 2013, 20(12): 8364-8373.
  • 9El-Ashtoukhy E S Z, Amin N K, Abdelwahab O. Removal of Lead(11) and Copper(11) from Aqueous Solution Using Pomegranate Peel as a New Adsorbent [J]. Desalination, 2008, 223(1/3): 162-173.
  • 10Zhang Y, Huo Q Y, Du P P, et al. Advances in New Cathode Material LiFePO4 for Lithium-ion Batteries [J]. Synth. Metal, 2012, 162(1): 1319-1322.

引证文献4

二级引证文献3

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