欢迎登录材料期刊网

材料期刊网

高级检索

采用固相烧结和球磨相结合的方法制备了SnCo0.9Y0.1合金,研究了球磨时间和添加碳对合金显微结构和电性能的影响。结果表明:SnCo0.9Y0.1合金的物相主要为CoSn和CoSn2;球磨后,物相不发生改变,但晶粒尺寸随着球磨时间的延长先减小后趋于稳定;添加碳后SnCo0.9Y0.1合金的物相也没改变,碳与合金形成物理混合物;SnCo0.9Y0.1合金的首次放电容量和首次充放电效率分别为300mA·h·g^-1和73.0%,经过25次循环后保持了首次放电容量的75.0%;球磨后,首次充放电容量和循环性能随着球磨时间延长先逐渐增加后趋于稳定,而首次充放电效率逐渐降低。碳的添加使SnCo0.9Y0.1合金的循环性能得到提高,25次循环后,保持了首次放电容量的85.9%。

SnCo0.9Y0.1 alloy was synthesized using solid-state sintering and ball milling, and effects of milling time and carbon addition on the microstructure and electrical properties were analyzed. The results show that theSnCo0.9Y0.1 alloy was mainly composed of CoSn and CoSn2, the phases did not change after milled, but the grain size decreased first and then tended to be stable with the prolongation of milling time. After adding carbon, phases of the alloy did not change, carbon and the alloy phase formed physical mixture. Initial discharge capacity and initial charge-discharge efficiency of the SnCo0.9Y0.1 alloy were 300 mA·h·g^-1 and 73.0 %, it remained above 75.0 % of the initial discharge capacity after 25 charge-discharge cycles. After milled, charge-discharge capacity and cycle performance increased first slowly and then tended to be stable, hut initial charge-discharge efficiency decreased gradually as the milling time increased. Adding carbon made cycle performance of SnCo0.9Y0.1 alloy better, and it remained above 85. 9% of the initial discharge capacity after 25 charge-discharge cycles.

参考文献

[1] 沈丁,杨绍斌,杨芳,张淑凯.固相烧结法制备Sn-Co合金及储锂性能研究[J].电源技术,2010(04):371-374.
[2] 谢健,赵新兵,余红明,齐好,曹高劭,涂江平.纳米Co-Sn金属间化合物的合成、表征及电化学吸放锂行为[J].物理化学学报,2006(11):1409-1412.
[3] 赵海鹏,何向明,姜长印,万春荣.锂离子电池锡基合金体系负极研究[J].化学进展,2006(12):1710-1719.
[4] 杨绍斌,沈丁,李强.Sn_(0.35-0.5x)Co_(0.35-0.5x)Zn_xCo_(0.30)复合材料的制备及电化学性能[J].金属学报,2010(01):6-12.
[5] Zheng Liang,Shaobin Yang.Synthesis and Electrochemical Properties of SnCo1-xFex/C Composite[J].材料科学技术学报(英文版),2010(07):653-659.
[6] Todd ADW;Mar RE;Dahn JR .Tin-transition metal-carbon systems for lithium-ion battery negative electrodes[J].Journal of the Electrochemical Society,2007(6):A597-A604.
[7] 张敬君,夏永姚.Co-Sn合金作为锂离子电池负极材料的研究[J].高等学校化学学报,2006(10):1923-1926.
[8] 谢健,赵新兵,曹高劭,涂江平.纳米CoSb作为锂离子电池新型负极材料的研究[J].浙江大学学报(工学版),2006(04):638-641.
[9] 黄可龙,张戈,刘素琴,杨赛.Sn-SnSb/石墨复合材料的制备及电化学性能[J].无机化学学报,2006(11):2075-2079.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%