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首页> 外文期刊>Journal of Applied Electrochemistry >Preparation and electrochemical properties of spherical LiFePO4 and LiFe0.9Mg0.1PO4 cathode materials for lithium rechargeable batteries
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Preparation and electrochemical properties of spherical LiFePO4 and LiFe0.9Mg0.1PO4 cathode materials for lithium rechargeable batteries

机译:锂二次电池用球形LiFePO 4 和LiFe 0.9 Mg 0.1 PO 4 正极材料的制备及电化学性能

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摘要

The spherical LiFePO4/C and LiFe0.9Mg0.1PO4/C powders were successfully prepared from spherical FePO4 via a simple uniform-phase precipitation method at normal pressure, using FeCl3 and H3PO4 as the reactants. The FePO4, LiFePO4/C, and LiFe0.9Mg0.1PO4/C powders were characterized by scanning electron microscopies (SEM), powder X-ray diffraction (XRD), X-ray photoelectron spectrometer (XPS), and tap-density testing. The uniform spherical particles produced are amorphous, but they were crystallized to FePO4 after calcining above 400 °C. Due to the homogeneity of the basic FePO4, the final products, LiFePO4/C and LiFe0.9Mg0.1PO4/C, are also significantly uniform and the particle size is of about 1 μm in diameter. The tap-density of the spherical LiFePO4/C and LiFe0.9Mg0.1PO4/C are 1.75 and 1.77 g cm−3, respectively, which are remarkably higher than the non-spherical LiFePO4 powders (the tap-density is 1.0–1.3 g cm−3). The excellent specific capacities of 148 and 157 mAh g−1 with a rate of 0.1 C are achieved for the LiFePO4/C and LiFe0.9Mg0.1PO4/C, respectively. Comparison of the cyclic voltammograms of LiFePO4/C and LiFe0.9Mg0.1PO4/C shows enhanced redox current and reversibility for the sample substituting Mg on the Fe site. LiFe0.9Mg0.1PO4/C exhibits better high-rate and cycle performances than the un-substituted LiFePO4/C.
机译:用球形FePO成功制备了球形LiFePO 4 / C和LiFe 0.9 Mg 0.1 PO 4 / C粉末通过使用FeCl 3 和H 3 PO 4 作为常压下的简单均相沉淀法在常压下进行 4 反应物。 FePO 4 ,LiFePO 4 / C和LiFe 0.9 Mg 0.1 PO 4 4 。由于基本的FePO 4 的均质性,最终产品LiFePO 4 / C和LiFe 0.9 Mg 0.1 PO 4 / C也非常均匀,粒径约为1μm。球形LiFePO 4 / C和LiFe 0.9 Mg 0.1 PO 4 / C的振实密度为1.75和1.77 g cm -3 分别比非球形LiFePO 4 粉末高得多(振实密度为1.0–1.3 g cm - 3 )。 LiFePO 4 / C和LiFe 0.9 分别以0.1 C的速率实现了148和157 mAh g -1 的优异比容量Mg 0.1 PO 4 / C。 LiFePO 4 / C和LiFe 0.9 Mg 0.1 PO 4 / C的循环伏安图的比较显示出增强的氧化还原在Fe位点上代替Mg的样品的电流和可逆性。 LiFe 0.9 Mg 0.1 PO 4 / C的高速率和循环性能优于未取代的LiFePO 4 / C。

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