以碳酸锂、碳酸锰和磷酸二氢铵为原料,以蔗糖为碳源,采用固相法制备了LiMnPO4/C复合正极材料.利用正交试验考察了焙烧温度、焙烧时间、球磨时间、锂锰摩尔比和蔗糖用量对材料首次放电比容量的影响,得到了最佳工艺条件.通过XRD、SEM、同步热分析仪和充放电测试仪等测试了材料的结构和电化学性能.所得材料在室温下电流密度为0.1C、0.5C和1C时首次放电比容量分别为130.5 mAh/g、125.8 mAh/g和117.1 mAh/g,经过50次循环性能测试后容量分别为113.2 mAh/g、98.1 mAh/g和85.4 mAh/g;在电流密度为0.1C且温度为60℃时,其首次放电比容量为156.4 mAh/g,测试结果表明循环性能较好.
参考文献
[1] | Guo, XF;Zhan, H;Zhou, YH .Rapid synthesis of LiFePO4/C composite by microwave method[J].Solid state ionics,2009(4/5):386-391. |
[2] | 周文彩,李金洪,姜晓谦.磷酸铁锂制备工艺及研究进展[J].硅酸盐通报,2010(01):133-137,146. |
[3] | 王玲,高朋召,李冬云,黄诗婷,肖汉宁.锂离子电池正极材料的研究进展[J].硅酸盐通报,2013(01):77-84. |
[4] | Manickam Minakshi;Pritam Singh;Dominique Appadoo;Danielle E. Martin .Synthesis and characterization of olivine LiNiPO_4 for aqueous rechargeable battery[J].Electrochimica Acta,2011(11):4356-4360. |
[5] | Deyu Wang;Hilmi Buqa;Michael Crouzet;Gianluca Deghenghi;Thierry Drezen;Ivan Exnar;Nam-Hee Kwon;James H. Miners;Laetitia Poletto;Michael Graetzel .High-performance, nano-structured LiMnPO_4 synthesized via a polyol method[J].Journal of Power Sources,2009(1):624-628. |
[6] | Urszula Dettlaff-Weglikowska;Norio Sato;Jun Yoshida;Siegmar Roth .Preparation and electrochemical characterization of LiMnPO4/single-walled carbon nanotube composites as cathode material for Li-ion battery[J].Physica status solidi, B. Basic research,2009(11/12):2482-2485. |
[7] | 刘爱芳,刘亚菲,胡中华,高歌,雷磊.金属离子掺杂LiMnPO4的电化学性能研究[J].功能材料,2010(07):1144-1146,1149. |
[8] | Seung-Min Oh;Sung-Woo Oh;Chong-Seung Yoon;Bruno Scrosati;Khalil Amine;Yang-Kook Sun .High-Performance Carbon-LiMnPO_4 Nanocomposite Cathode for Lithium Batteries[J].Advanced functional materials,2010(19):3260-3265. |
[9] | Maja Pivko;Marjan Bele;Elena Tchemychova .Synthesis of Nanometric LiMnPO4 via a Two-Step Technique[J].Chemistry of Materials: A Publication of the American Chemistry Society,2012(6):1041-1047. |
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:
-
10%
-
20%
-
30%
-
40%
-
50%