大米淀粉硬碳负极材料的制备及其电化学性能研究

王磊1,2,4,5, 胡鹏飞3*, 乔永民4,5, 谢秋生4,5, 刘萍4,5

化工新型材料 ›› 2018, Vol. 46 ›› Issue (1) : 229 -232.

PDF (3561KB)
化工新型材料 ›› 2018, Vol. 46 ›› Issue (1) : 229-232.
开发与应用

大米淀粉硬碳负极材料的制备及其电化学性能研究

    王磊1,2,4,5, 胡鹏飞3*, 乔永民4,5, 谢秋生4,5, 刘萍4,5
作者信息 +

Preparation and electrochemical performance of rice starch hard carbon cathode material

  • Wang Lei1,2,4,5, Hu Pengfei3, Qiao Yongmin4,5, Xie Qiusheng4,5, Liu Ping4,5
Author information +
文章历史 +
PDF (3645K)

摘要

以大米淀粉为原料,氯化铵为脱水催化剂,经一步程序加热得到大米淀粉硬碳,并制得大米淀粉硬碳负极材料。实验结果表明,大米淀粉硬碳的可逆和不可逆比容量随碳化温度升高而降低,1050℃碳化的样品首次库伦效率最高达到75.5%,0.1C首次充电比容量和放电比容量分别为656mAh/g和495.6mAh/g;0.1C、1C循环充放电时,第50次循环的比容量分别是第1次放电比容量的91.96%和85.48%。大米淀粉硬碳负极材料成本低廉、制备过程环境友好,有望在锂离子电池领域得到应用。

Abstract

With rice starch as the starting material and ammonium chloride as the dehydration catalyst,rice starch hard carbon (RSHC) was prepared by one-step programmed heating process.The micro-structure and morphology of prepared RSHC samples were characterized respectively.The electrochemical performance analysis Indicated that the reversible and irreversible specific capacities of prepared RSHCs decreased as carbonization temperatures increased.The carbonized material had the highest initial efficiency(75.5%) at 1050℃(HC-1050).The initial charge/discharge capacities of HC-1050 were 656mAh/g and 495.6mAh/g at 0.1C.After 50 charge-discharge cycles at the rate of 0.1C and 1C,91.96% and 85.48% of initial discharge capacity can be still reached,respectively.Rice starch hard carbon cathode material may be applied to the lithium-ion battery field due to the environmental friendliness of preparation process and the low cost of raw materials.

关键词

锂离子电池 / 淀粉 / 硬碳 / 电化学性能

Key words

Li-ionic battery / starch / hard carbon / electrochemical property

引用本文

引用格式 ▾
大米淀粉硬碳负极材料的制备及其电化学性能研究[J]. 化工新型材料, 2018, 46(1): 229-232 DOI:

登录浏览全文

4963

注册一个新账户 忘记密码

参考文献

[1] Kim S J,Kim M C,Han S B,et al.3D flexible Si based-composite (Si@Si3N4)/CNF electrode with enhanced cyclability and high rate capability for lithium-ion batteries[J].Nano Energy,2016,27:545-553.
[2] Liu R,Su W,He P,et al.Synthesis of SnO2/Sn hybrid hollow spheres as high performance anode materials for lithium ion battery[J].J Alloy Compd,2016,688(Part B):908-913.[3] Tarascon J M,Armand M.Issues and challenges facing rechargeable lithium batteries[J].Nature,2001,414(6861):359-367.
[4] Goodenough J B,Park K S.The Li-ion rechargeable battery:a perspective[J].Journal of the American Chemical Society,2013,135(4):1167-1176.
[5] Sun H,He X,Ren J,et al.Hard carbon/lithium composite anode materials for Li-ion batteries[J].Electrochim Acta,2007,52(13):4312-4316.
[6] Ni J,Huang Y,Gao L.A high-performance hard carbon for Li-ion batteries and supercapacitors application[J].Journal of Power Sources,2013,223:306-311.
[7] 牛鹏星,王艳莉,詹亮,等.针状焦和沥青焦用作锂离子电池负极材料的电极性能[J].材料科学与工程学报,2011,29(2):204-209.
[8] Fey G T K,Lee D,Lin Y,et al.High-capacity disordered carbons derived from peanut shells as lithium-intercalating anode materials[J].Synthetic Metals,2003,139(1):71-80.
[9] Gryszkin A,Zieba T,Kapelko M,et al.Effect of thermal modifications of potato starch on its selected properties[J].Food Hydrocolloids,2014,40(40):122-127.
[10] Li W,Chen M,Wang C.Spherical hard carbon prepared from potato starch using as anode material for Li-ion batteries[J].Materials Letters,2011,65(23/24):3368-3370.
[11] Zhao S,Wang C,Chen M,et al.Preparation of carbon sphere from corn starch by a simple method[J].Materials Letters,2008,62(19):3322-3324.
[12] Wang H,Zhong Y,Li Q,et al.Cationic starch as a precursor to prepare porous activated carbon for application in supercapacitor electrodes[J].J Phys Chem Solids,2008,69(10):2420-2425.
[13] Xue Z,Chen P,Yang Q,et al.Effects of low-temperature carbonization temperature and time on morphology of carbon particles from maize starch[J].J Mater Sci,2014,49(5):2180-2186.
[14] 李辉,温月芳,杨永岗,等.硫酸铵/氯化铵处理对粘胶纤维热裂解行为的影响[J].高科技纤维与应用,2006,31(6):20-26.

基金资助

国家自然科学基金(61504168);中国博士后科学基金第56批面上项目(2014M561754);乌鲁木齐市科技计划项目(P151010005)

AI Summary AI Mindmap
PDF (3561KB)

611

访问

0

被引

导航
相关文章

AI思维导图

/