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Morphology evolution and impurity analysis of LiFePO4 nanoparticles via a solvothermal synthesis process

机译:溶剂热合成法制备LiFePO4纳米粒子的形貌演变和杂质分析

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摘要

A solvothermal method is applied for synthesizing LiFePO4 nanoparticles using ethylene glycol as solvent. Crystals are obtained with quite different morphologies at solutions of various acidity prepared via changing the primary LiOH/H3PO4 mole ratios. SEM, TEM, and HRTEM are used to analyze the samples. Element distribution in solid LiFePO4 particles, mother solutions and washing solutions are tracked by ICP-OES and pH tests. Morphological test results show that the main exposed faces of samples transform from (100) as a rectangular shape to (010) as a spindle shape with the pH of the mother solutions increasing. Samples with predominant (010) faces are formed at less acidic solvothermal solutions. At the intermediate pH from 3.11 to 3.73, powders like long hexagon nanorods are synthesized with (100) and (010) faces exposed. XRD results show that the long hexagon nanorods have better crystal structures when synthesized at LiOH/H3PO4 = 2.7-3.0. Impurities like Fe3O4, Li3PO4, etc. are detected in the spindle shape LiFePO4 powders. The amount of impurities is related to the synthesis process and increases with the pH of solvothermal solution increasing. High temperature treatment is useful for impurities transforming to LiFePO4 and thus reduces the impurities. The long hexagon nanorods show better electrochemical performances: 169.9 mA h g(-1) at 0.1 C, and 129.8 mA h g(-1) at 10 C.
机译:溶剂热法应用于以乙二醇为溶剂合成LiFePO4纳米粒子。在通过改变一级LiOH / H3PO4摩尔比制得的各种酸度的溶液中,可获得具有完全不同形态的晶体。 SEM,TEM和HRTEM用于分析样品。 ICP-OES和pH测试可追踪固态LiFePO4颗粒,母液和洗涤液中的元素分布。形态学测试结果表明,随着母液pH值的增加,样品的主要暴露面从矩形的(100)变为纺锤形的(010)。在酸性较低的溶剂热溶液中会形成具有主要(010)面的样品。在3.11至3.73的中间pH值下,合成的粉末状长六角形纳米棒,其(100)和(010)面均暴露在外。 XRD结果表明,当LiOH / H3PO4 = 2.7-3.0合成时,长六角形纳米棒具有更好的晶体结构。在锭状的LiFePO4粉末中检测到Fe3O4,Li3PO4等杂质。杂质的数量与合成过程有关,并且随着溶剂热溶液pH值的增加而增加。高温处理对于杂质转化为LiFePO4有用,因此可以减少杂质。长六角纳米棒显示出更好的电化学性能:在0.1 C下为169.9 mA h g(-1),在10 C下为129.8 mA h g(-1)。

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