无机盐工业
主管:中海油天津化工研究设计院有限公司
主办:中海油天津化工研究设计院有限公司
   中海油炼油化工科学研究院(北京)有限公司
   中国化工学会无机酸碱盐专业委员会
ISSN 1006-4990 CN 12-1069/TQ

无机盐工业 ›› 2025, Vol. 57 ›› Issue (12): 18-25.doi: 10.19964/j.issn.1006-4990.2025-0021

• 研究与开发 • 上一篇    下一篇

锂离子电池石墨负极材料的包覆改性及电化学性能研究

凌政1(), 孙陆1, 田朋1,2, 叶俊伟1,2()   

  1. 1.大连理工大学化工学院,辽宁 大连 116024
    2.辽宁省硼镁特种功能材料 制备及应用技术工程实验室,辽宁 大连 116024
  • 收稿日期:2025-01-15 出版日期:2025-12-10 发布日期:2025-06-13
  • 通讯作者: 叶俊伟(1979— ),男,博士,教授,研究方向为资源化工与先进功能材料;E-mail:junweiye@dlut.edu.cn
  • 作者简介:凌政(2000— ),男,硕士,研究方向为石墨负极材料改性及其性能研究;E-mail:Lz1763026070@mail.dlut.edu.cn
  • 基金资助:
    国家自然科学基金项目(22378053);企业委托项目(HX20230646)

Study on coating modification and electrochemical performance investigation of graphite anode materials for lithium-ion batteries

LING Zheng1(), SUN Lu1, TIAN Peng1,2, YE Junwei1,2()   

  1. 1. School of Chemical Engineering,Dalian 116024,China
    2. Liaoning Province Magnesium Special Functional;Material Preparation and Application Technology Engineering Laboratory,Dalian University of Technology,Dalian 116024,China
  • Received:2025-01-15 Published:2025-12-10 Online:2025-06-13

摘要:

石墨是重要的锂离子电池负极材料,但天然石墨的初始库伦效率低、循环稳定性和倍率性能较差等缺点限制其应用。为了提高石墨结构稳定性及其电化学性能,以Al(NO33·9H2O为铝源,利用氨水调节pH,采用沉淀法在石墨表面均匀包覆一层Al(OH)3,并进一步热处理制备Al2O3包覆石墨负极材料。此方法与原子层沉积法相比,具有过程简单和成本低廉的优点,比溶胶-凝胶法反应进程更好控制且能耗更低。当Al2O3包覆质量分数为1.03%时,获得表面光滑的改性石墨,Al2O3包覆层可起到预成型固态电解质界面(SEI)的作用,降低SEI膜的再生及锂离子的损耗。电化学性能试验表明,该材料在充放电过程中表现出优异的倍率性能及循环稳定性,将原料石墨和1.03%(质量分数)Al2O3包覆改性的石墨负极材料分别与锂片组装成锂离子电池,在0.1C(1.0C=372 mAh/g)的电流密度下,充放电循环100次后,其比容量分别为212.59 mAh/g和354.37 mAh/g,容量保持率分别为67.99%和98.59%。

关键词: 锂离子电池, 氧化铝, 表面改性, 负极材料

Abstract:

Graphite is an important anode material for lithium-ion batteries,but the low initial coulombic efficiency,short cycle life,and poor rate performance of natural graphite limit its application.In order to improve the stability of its graphite structure and electrochemical performance,Al(NO33·9H2O was used as the aluminum source with adjusting the pH with ammonia water and uniformly coating a layer of Al(OH)3 on the surface of graphite by precipitation method,and Al2O3 coated graphite anode material was further prepared by heat treatment.Compared with the atomic layer deposition method,this method had the advantages of simple process and low cost,better control of the reaction process and lower energy consumption than the sol gel method.When the Al2O3 coating mass was 1.03%,the modified graphite surface was smooth.The Al2O3 coating layer could serve as a preformed solid electrolyte interface(SEI),reducing the regeneration of SEI and the consumption of lithium ions during subsequent cycling processes.Electrochemical performance tests showed that the materials exhibited excellent rate performance and cycling stability during charge and discharge processes.Graphite and Al2O3 coated graphite anode materials with a modification amount of 1.03% were assembled with lithium sheets to form lithium-ion batteries.After 100 cycles of charge and discharge at a current density of 0.1C(1.0C=372 mA∙h/g),the specific capacities were 212.59 mA∙h/g and 354.37 mA∙h/g,with capacity retention rates of 67.99% and 98.59%,respectively.

Key words: lithium-ion batteries, alumina, surface modification, anode material

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