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High power Nb-doped LiFePO4 Li-ion battery cathodes; pilot-scale synthesis and electrochemical properties

机译:大功率掺Nb的LiFePO4锂离子电池正极;中试规模的合成和电化学性能

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High power, phase-pure Nb-doped LiFePO4 (LFP) nanoparticles are synthesised using a pilot-scale continuous hydrothermal flow synthesis process (production rate of 6 kg per day) in the range 0.01-2.00 at% Nb with respect to total transition metal content. EDS analysis suggests that Nb is homogeneously distributed throughout the structure. The addition of fructose as a reagent in the hydrothermal flow process, followed by a post synthesis heat-treatment, affords a continuous graphitic carbon coating on the particle surfaces. Electrochemical testing reveals that cycling performance improves with increasing dopant concentration, up to a maximum of 1.0 at% Nb, for which point a specific capacity of 110 mAh g(-1) is obtained at 10 C (6 min for the charge or discharge). This is an excellent result for a high power cathode LFP based material, particularly when considering the synthesis was performed on a large pilot-scale apparatus. (C) 2016 The Authors. Published by Elsevier B.V.
机译:使用中试规模连续水热流合成工艺(每天6 kg的生产量)在相对于总过渡金属的Nb为0.01-2.00 at%Nb的范围内合成高功率,纯Nb掺杂的LiFePO4(LFP)纳米颗粒。内容。 EDS分析表明,Nb在整个结构中均匀分布。在水热流工艺中添加果糖作为试剂,然后进行合成后热处理,可在颗粒表面提供连续的石墨碳涂层。电化学测试表明,随着掺杂剂浓度的增加,循环性能会提高,最高Nb可达1.0 at%,此时,在10 C(充电或放电6分钟)下可获得110 mAh g(-1)的比容量。 。对于基于高功率阴极LFP的材料,这是一个极好的结果,特别是考虑到在大型中试规模的设备上进行合成时。 (C)2016作者。由Elsevier B.V.发布

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