锂离子电池Mo2C/N-C复合材料的制备及性能研究

陈东, 郑宝成, 丘德立, 谢建晖*

化工新型材料 ›› 2020, Vol. 48 ›› Issue (6) : 67 -71.

PDF (3373KB)
化工新型材料 ›› 2020, Vol. 48 ›› Issue (6) : 67-71.
新材料与新技术

锂离子电池Mo2C/N-C复合材料的制备及性能研究

    陈东, 郑宝成, 丘德立, 谢建晖*
作者信息 +

Preparation and property of Mo2C/N-C composite material for lithium-ion battery

  • Chen Dong, Zheng Baocheng, Qiu Deli, Xie Jianhui
Author information +
文章历史 +
PDF (3453K)

摘要

以三氧化钼、草酸、盐酸多巴胺为原料,通过水热和高温煅烧的方法制备了碳化钼与氮掺杂碳纳米管(Mo2C/N-C)复合材料。采用X射线衍射仪、热重分析仪、扫描电子显微镜、透射电子显微镜、拉曼光谱等表征手段研究了Mo2C/N-C复合材料的化学组成、结构与形貌,并使用电池测试系统对材料进行了电化学性能测试。结果表明:Mo2C/N-C复合材料具有棒状碳纳米管结构,长径比较大,Mo2C纳米微晶均匀分布在氮掺杂的碳基质中。Mo2C的纳米微晶缩短了Li+离子的扩散路径,纵横比较大的棒状结构缩短了电解质中离子迁移路径,且氮掺杂的碳基质加速了电子转移并在放电/充电循环期间缓冲了Mo2C的体积变化。用Mo2C/N-C作为锂离子电池的负极材料,电流密度为100mA/g时,复合材料初始放电比容量为1146.5mAh/g,充电比容量为855.2mAh/g,库伦效率为74.59%。经过100次充放电循环后,复合材料放电比容量为574.2mAh/g,库仑效率为98.08%,表现出优异的电化学性能。

Abstract

Mo2C/N-C(molybdenum carbide and nitrogen doped carbon) nanotube composite cathode materials were prepared by simple hydrothermal and high temperature pyrolysis using molybdenum trioxide,oxalic acid and dopamine hydrochloride as raw materials.XRD,TG,SEM,TEM,Raman and other characterization methods were used to study the chemical composition,structure and morphology of Mo2C/N-C samples,and the electrochemical performance of the samples was tested by the battery test system.The results shown that the material had a rod-like carbon nanotube structure with larger aspect ratio,and the Mo2C nanocrystallite was uniformly distributed in the nitrogen-doped carbon matrix.The nanocrystallites of Mo2C shortened the diffusion path of Li+,the rod-like structure with larger aspect ratio shortened the ion migration path in the electrolyte,and the nitrogen-doped carbon matrix accelerated electron transfer and buffered the volume change of Mo2C during the discharge/charge cycle.Therefore,the prepared cathode exhibited excellent electrochemical performance:when the charge and discharge were performed at the current density of 100mA/g,the discharge specific capacity of the first cycle was 1146.5mAh/g,the charge specific capacity was 855.2mAh/g,and coulomb efficiency reached 74.59%.After 100 cycles,the discharge specific capacity was 574.2mAh/g,and the coulombic efficiency reached 98.08%.

关键词

Mo2C/N-C复合材料 / 锂离子电池 / 负极材料 / 电化学

Key words

Mo2C/N-C composite material / lithium ion battery / cathode material / electrochemistry

引用本文

引用格式 ▾
锂离子电池Mo2C/N-C复合材料的制备及性能研究[J]. 化工新型材料, 2020, 48(6): 67-71 DOI:

登录浏览全文

4963

注册一个新账户 忘记密码

参考文献

[1] Bruno Scrosati,Jurgen Garche.Lithium batteries:status,prospectsand future[J].Power Sources,2010,195(9):2419-2430.
[2] Jia Puqi,Shao Zhongbao,Liu Kuiren.Pretreatments-assisted high temperature ball milling route to Li4Ti5O12 andits electrochemical performance[J].Journal of Power Sources,2014,266:114-120.
[3] Akira Izumi,Masakazu Sanada,Koji Furuichi,et al.Development of high capacity lithium-ion battery applying three-dimensionally patterned electro[J].Electrochimica Acta,2012,79:218-222.
[4] Sharon M,Hsu W K,Kroto H W,et al.Camphor-based carbon nanotubes as an anode in lithium secondary batteries[J].Journal of Power Sources,2002,104(1):148-153.
[5] 李健,官亦标,傅凯,等.碳纳米管与石墨烯在储能电池中的应用[J].化学进展,2014,26(7):1233-1243.
[6] 向银域,陈婵,肖天赐,等.过渡金属氧化物在锂离子电池中的应用[J].电源技术,2017,41(12):1782-1784.
[7] Yang L,Liu L,Zhu Y,et al.Preparation of carbon coated MoO2 nanobelts and their high performance as anode materials for lithium ion batteries[J].Journal of Materials Chemistry,2012,22(26):13148-13152.
[8] 马晓轩,郝健,李垚,等.类石墨烯二硫化钼在锂离子电池负极材料中的研究进展[J].材料导报A:综述篇,2014,28(6):1-9.
[9] Naguib M,Jeremy Come,Dyatkin B,et al.MXene:a promising transition metal carbide anode for lithium-ion batteries[J].Electrochemistry Communications,2012,16(1):61-64.
[10] Zhu J,Sakaushi K,Clavel G,et al.A general salt-templating method to fabricate vertically aligned graphitic carbon nanosheets and their metal carbide hybrids for superior lithium ion batteries and water splitting[J].Journal of the American Chemical Society,2015,137(16):5480-5485.[11] 冯贺.过渡金属碳化物/B、N掺杂纳米碳的制备及其电催化性能[D].哈尔滨:黑龙江大学,2017.
[12] Chen S,Bi J,Zhao Y,et al.Nitrogen-doped carbon nanocages as efficient metal-free electrocatalysts for oxygen reduction reaction[J].Advanced Materials,2012,24(41):5593-5597.
[13] Mai L,Tian X,Xu X,et al.Nanowire electrodes for electrochemical energy storage devices[J].Chemical Reviews,2014,114(23):11828-11862.
[14] Qie L,Chen W M,Wang Z H.Nitrogen-doped porous carbonnanofiber webs as anodes for lithium ion batteries with a superhigh capacity and rate capability[J].Advanced Materials,2012,24(15):2047-2050.
[15] 李香.钼基纳米复合材料的储锂/钠性能[D].广州:华南理工大学,2017.
[16] 徐逸婷,陈龙,陈卓.石墨碳纳米材料光学性质在生化传感领域的应用[J].物理化学学报,2017,33(1):28-39.
[17] Cui C,Li X,Hu Z,et al.Growth of MoS2@C nanobowls as a lithium-ion battery anode material[J].RSC Advances,2015,5(112):92506-92514.
[18] Chen Y Y,Zhang Y,Jiang W J,et al.Pomegranate-like N,P-doped Mo2C@C nanospheres as highly active electrocatalysts for alkaline hydrogen evolution[J].ACS Nano,2016,10(9):8851-8860.
[19] 张彩萍,姜久春,张维戈.梯次利用锂离子电池电化学阻抗模型及特性参数分析[J].电力系统自动化,2013,37(1):54-58.
[20] Wayne Reitz.A review of:“impedance spectroscopy,theory,experiment,and applications”[J].Materials and Manufacturing Processes,2006,21(4):425.

基金资助

国家青年科学基金(21801058)

AI Summary AI Mindmap
PDF (3373KB)

834

访问

0

被引

导航
相关文章

AI思维导图

/