不同体系结构NCM正极材料环境适应性研究

吴江, 钱佳炜, 陈浩, 李学彬, 谷科城*, 刘浩

化工新型材料 ›› 2021, Vol. 49 ›› Issue (9) : 107 -110.

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化工新型材料 ›› 2021, Vol. 49 ›› Issue (9) : 107-110. DOI: 10.19817/j.cnki.issn 1006-3536.2021.09.023
新材料与新技术

不同体系结构NCM正极材料环境适应性研究

    吴江, 钱佳炜, 陈浩, 李学彬, 谷科城*, 刘浩
作者信息 +

Study on environmental adaptability of NCM cathode material with different architecture

  • Wu Jiang, Qian Jiawei, Chen Hao, Li Xuebin, Gu Kecheng, Liu Hao
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摘要

锂离子电池因优异性能得到了广泛运用,但不同结构正极材料存在各自的优缺点,出于优势互补进而制备的三元正极材料应运而生。三元正极材料中,镍钴锰酸锂(NCM)类相较于镍钴铝酸锂(NCA)类材料具有制备工艺简单的优势,有良好的应用前景。电池使用幅域辽阔,气候差异大,考察正极材料在宽温(-25~+55℃)范围内的环境适用性显得尤为重要。通过制备、表征得到了NCM622/NCM811不同体系、NCM811不同结构的正极材料,对材料高低温环境适应性、抗跌落适应性进行研究,探究材料体系结构对充放电容量等电化学性能的影响,为后期成品化应用提供依据。

Abstract

Lithium-ion batteries have been widely used due to their excellent performance.However,different cathode materials with different structures have their own advantages and disadvantages.Therefore,ternary cathode materials prepared by complementary advantages emerged at the right moment.In ternary cathode materials,lithium nickel-cobalt manganate (NCM) class has the advantage of simple preparation process compared with lithium nickel-cobalt Aluminate (NCA) class,and has a good application prospect.It is particularly important to investigate the environmental suitability of cathode materials in the wide temperature range (-25~+55℃) due to the wide range of battery use and large climate differences.Cathode materials with different NCM622/NCM811 systems and different NCM811 structures were obtained through preparation and characterization.The adaptability of the materials to high and low temperature environment and anti-drop adaptability were studied to explore the influence of material architecture on electrochemical properties such as charge and discharge capacity,providing a basis for the later finished product application.

关键词

三元正极材料 / 结构 / 环境 / 适应性

Key words

ternary cathode material / structure / environment / adaptability

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不同体系结构NCM正极材料环境适应性研究[J]. 化工新型材料, 2021, 49(9): 107-110 DOI:10.19817/j.cnki.issn 1006-3536.2021.09.023

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参考文献

[1] Manthiram Arumugam.An outlook on lithium ion battery technology[J].ACS Central Science,2017,3(10):1063-1069.
[2] 王国卿.高比能量密度锰基复合材料在锂电池中的应用研究[D].杭州:浙江大学,2016.
[3] Deng S,Wang L,Hou T,et al.Two-dimensional MnO2 as a better cathode material for lithium ion batteries[J].The Journal of Physical Chemistry C,2015,119(52):28783-28788.
[4] 黄瑞鸿,杨英全,李华成,等.锂电池正极材料镍钴锰酸锂中钴含量的测定[J].中国锰业,2018,36(2):144-147.
[5] 李伟伟,姚路,陈改荣,等.锂离子电池正极材料研究进展[J].电子元件与材料,2012,31(3):77-81.
[6] 刘云建.锂离子动力电池的制作与性能研究[D].长沙:中南大学,2009.
[7] 杨世霞.锂离子电池层状正极材料的研究进展[J].广东化工,2012,39(18):57-58.
[8] 王兴杰,杨文胜,卫敏,等.柠檬酸溶胶-凝胶法制备LiCoO2电极材料及其表征[J].无机化学学报,2003,19(6):603-608.
[9] Zheng X,Li X,Wang Z,et al.Investigation and improvement on the electrochemical performance and storage characteristics of LiNiO2-based materials for lithium ion battery[J].Electrochimica Acta,2016,191:832-840.
[10] Zhao H,Liu S,Liu X,et al.Orthorhombic LiMnO2 nanorods as cathode materials for lithium-ion batteries:synthesis and electrochemical properties[J].Ceramics International,2016,42(7):9319-9322.
[11] Liu Z,Yu A,Lee J Y.Synthesis and characterization of LiNi1-x-yCoxMnyO2 as the cathode materials of secondary lithium batteries[J].Journal of Power Sources,1999,s81-82:416-419.
[12] Ohzuku T,Makimura Y.Layered lithium insertion material of LiCo1/3Ni1/3Mn1/3O2 for lithium-ion batteries[J].Chemistry Letters,2001,1(7):642-643.

基金资助

重庆市基础科学与前沿技术研究项目(cstc2018jcyjAX0306);重庆市研究生科研创新项目(CYS20373)

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