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 ›› 2024, Vol. 56 ›› Issue (2): 57-64.doi: 10.19964/j.issn.1006-4990.2023-0104

• 研究与开发 • 上一篇    下一篇

镍铁锰酸钠层状氧化物的制备及性能研究

王亿周(), 胡晓梅, 王永详, 张维民()   

  1. 山东理工大学化学化工学院,山东 淄博 255000
  • 收稿日期:2023-03-01 出版日期:2024-02-10 发布日期:2024-02-06
  • 通讯作者: 张维民(1977— ),男,博士,副教授,研究方向为化学和电化学工程;E-mail:wmzhang@sdut.edu.cn
  • 作者简介:王亿周(1998— ),男,硕士,研究方向为锂、钠离子电池;E-mail:wangyizhou2023@163.com
  • 基金资助:
    国家自然科学基金项目(21776175)

Study on preparation of nickel-iron-manganate sodium layered oxides and their properties

WANG Yizhou(), HU Xiaomei, WANG Yongxiang, ZHANG Weimin()   

  1. School of Chemistry and Chemical Engineering,Shandong University of Technology,Zibo 255000,China
  • Received:2023-03-01 Published:2024-02-10 Online:2024-02-06

摘要:

O3型NaNi0.4Fe0.2Mn0.4O2正极材料具有比容量高、高低温性能优良等特性,是一种具有实际应用价值的钠离子正极材料。通过共沉淀法制备了一系列正极材料,重点研究了pH对材料特征和性能的影响。借助扫描电子显微镜(SEM)、X射线衍射仪(XRD)、恒电流间歇滴定技术(GITT)及其他电化学测试技术对NaNi0.4Fe0.2Mn0.4O2材料的形貌、晶格参数、循环性能、倍率性能、钠离子扩散系数及赝电容贡献率等进行分析,发现随着pH的增大,样品粒径呈减小趋势,且过高的pH会造成样品粒径锐减,最佳合成pH为11。最佳pH条件下NaNi0.4Fe0.2Mn0.4O2材料的电化学测试结果表明,在30 ℃下电流密度为0.2C时,其放电比容量为142.3 mA·h/g,展现出优异的电化学性能。

关键词: 钠离子电池, 共沉淀法, 钠离子扩散系数, 赝电容

Abstract:

The O3-type NaNi0.4Fe0.2Mn0.4O2 cathode material has the characteristics of high specific capacity and excellent high/low-temperature performance,which is a kind of sodium-ion cathode material with practical application value.A series of cathode materials were prepared by co-precipitation method,and the effects of pH on the characteristics and performance of the materials were investigated.With the help of scanning electron microscope(SEM),X-ray diffractometer(XRD),constant current intermittent titration technique(GITT) and other electrochemical testing techniques,the morphology,lattice parameter,cycling performance,multiplicity performance,sodium-ion diffusion coefficient,and pseudocapacitance contribution of the NaNi0.4Fe0.2Mn0.4O2 materials were analyzed,and the samples were found to have a decreasing particle size with the increase of pH.It was found that the particle size of the samples decreased with the increase of pH,and excessive high pH would cause a sharp decrease in the particle size of the samples,and the optimal synthesis pH was 11.The electrochemical test results of the NaNi0.4Fe0.2Mn0.4O2 material at the optimized pH showed that the discharge specific capacity of NaNi0.4Fe0.2Mn0.4O2 material at 30 ℃ with a current density of 0.2C was 142.3 mA·h/g,which exhibited excellent electrochemical performance.

Key words: sodium-ion battery, coprecipitation, sodium-ion diffusion coefficient, pseudocapacitance

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