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首页> 外文期刊>Electrochimica Acta >Optimized solvothermal synthesis of LiFePO4 cathode material for enhanced high-rate and low temperature electrochemical performances
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Optimized solvothermal synthesis of LiFePO4 cathode material for enhanced high-rate and low temperature electrochemical performances

机译:优化LiFepo4阴极材料的溶剂热合成,提高高速率和低温电化学性能

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A series of LiFePO4 nanoparticles were synthesized via solvothermal method for process parameters optimizing. The influences of Li:P:Fe mole ratio, reaction temperature and reaction time were systematically investigated. The obtained LiFePO4 nanoparticles were characterized by X-ray diffraction (XRD), scanning/transmission electron microscope (SEM/TEM), galvanostatic charge-discharge and cyclic voltammetry test. Results show that the mole ratio of Li: P: Fe has significant effects on the morphology and particle size of LiFePO4 material, while reaction temperature and time show little influence on crystal and shape. Prepared with Li:P:Fe = 3:1.5:1 at 180 degrees C for 4 h, the LiFePO4 shows rectangular nanoplates with well-dispersed, resulting in the best electrochemical performance. After carbon coating, this optimized LiFePO4/C composite exhibits superior high-rate performance with a discharge capacity of 122.5 mAh/g at 50C at 25 degrees C, as well as excellent low temperature property of 116.7 and 61.4 mAh/g at 0 degrees C and -20 degrees C at 5C, respectively. To illustrate the LiFePO4 nanoparticles with different size and shape caused by variations of mole ratio, a possible formation mechanism is demonstrated. This work indicates that the optimized solvothermal process can be a promising guidance used in industrialization to synthesize cathode material with enhanced high-rate and low temperature performance. (c) 2017 Elsevier Ltd. All rights reserved.
机译:通过溶液方法合成了一系列LiFePO4纳米粒子,用于优化工艺参数。 Li:P:Fe摩尔比,反应温度和反应时间的影响得到了系统地进行了系统研究。通过X射线衍射(XRD),扫描/透射电子显微镜(SEM / TEM),电流电荷 - 放电和循环伏安法试验表征获得的LiFePO4纳米颗粒。结果表明,Li:P:Fe的摩尔比对LiFePO4材料的形态和粒度具有显着影响,而反应温度和时间对晶体和形状略微影响。用LI:P:Fe = 3:1.5:1在180℃下备4小时,LiFePO4显示矩形纳米板,具有良好的分散,导致最佳的电化学性能。碳涂层后,该优化的LiFePO4 / C复合材料具有优异的高速性能,放电容量为122.5mAh / g,50℃,低温为116.7和61.4mah / g在0摄氏度下分别为-20摄氏度,分别为5℃。为了说明具有不同尺寸和由摩尔比变化引起的不同尺寸和形状的LiFePO4纳米颗粒,可以说明可能的形成机制。这项工作表明,优化的溶剂热过程可以是工业化的有希望的引导,以合成阴极材料,以提高高速和低温性能。 (c)2017 Elsevier Ltd.保留所有权利。

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