节点文献
定-转子反应器制备LiFe1-xMxPO4(M=Mn,Ni)粉体及其电性能研究
Synthesis of LiFe1-xMxPO4 (M=Mn,Ni) in a Rotor-Stator Reactor and Its Electrical Performance
【摘要】 采用具有高效传质和微观混合性能的定-转子反应器制备了Li Fe1-x Mnx PO4(x=0.0,0.1,0.2,0.3)和Li Fe1-x Nix PO4(x=0.00,0.03,0.05,0.07)粉体,分别用作正极材料制成电池后,采用电池测试系统测定了电池的电化学性能随温度的变化规律。结果表明,粉体颗粒呈类球形,尺寸分布均匀,粒径范围为510μm,Mn和Ni的掺杂没有改变粉体的晶体结构。以Li Fe0.8Mn0.2PO4和Li Fe0.95Ni0.05PO4 2种组成的粉体性能最好,在倍率0.1 C下,所得电池的首次充放电比容量在室温和50℃时,分别为153.2和155.7 m Ah/g,及156.4和160.4 m Ah/g;100次充放电循环后电池的容量保持率分别为95.4%和96.5%,及93.8%和95.0%。借助具有过程强化作用的定-转子反应器制备的Mn和Ni掺杂Li Fe PO4正极材料的电性能得到显著提高,原因是定-转子反应器一方面可以制备颗粒尺寸均匀的粉体,另一方面又可使掺杂的Mn和Ni在粉体颗粒中均匀分布,两者同时提高了电池中Li+的扩散速率,进而提高了锂离子电池的电化学性能和高温电性能。
【Abstract】 Li Fe1-xMnxPO4(x=0.0,0.1,0.2,0.3)and Li Fe1-xMnxPO4(x=0.00,0.03,0.05,0.07)powders were synthesized in a rotor-stator reactor which possesses high efficient performances of mass transfer and micro-mixing.The powders were used as cathode materials in the batteries and the battery test system was employed to explore the dependence of electrochemical property on temperature.Results show that the particle is near-sphere,uniformly distributed and in the particle size of 510μm.The crystallographic evidence demonstrates that the introduction of Mn and Ni does not change the host crystal structure.The powders of Li Fe0.8Mn0.2PO4 and Li Fe0.95Ni0.05PO4 exhibit the best performance.At room temperature,their first charge-discharge specific capacities are 153.2 and 155.7 m Ah/g at 0.1 C and their capacity retention ratios are 95.4%and 96.5%after 100 cycles,respectively.At 50 oC,their first charge-discharge specific capacities are156.4 and 160.4 m Ah/g at 0.1 C and their capacity retention ratios are 93.8%and 95.0%after 100 cycles,respectively.On the one hand,the rotor-stator reactor makes the obtained particle homogeneously dispersed.On the other hand,it also causes the doping Mn and Ni to distribute uniformly in the particle.Both of the two advantages increase the Li+ionic diffusion rate and enhance the electrochemical and high-temperature electrical properties of the materials.
【Key words】 LiFe1-xMnxPO4; LiFe1-xNixPO4; rotor-stator reactor; electrochemical property; high-temperature electrical property;
- 【文献出处】 稀有金属材料与工程 ,Rare Metal Materials and Engineering , 编辑部邮箱 ,2018年S1期
- 【分类号】TB383.3;TM912
- 【被引频次】1
- 【下载频次】60