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Study of the Electrochemical Properties of Magnetite, Maghemite and Hematite Nanoparticles for their Applications in Lithium Ion Batteries

机译:磁铁矿,磁赤铁矿和赤铁矿纳米粒子在锂离子电池中的电化学性能研究

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Iron oxide nanoparticles, including magnetite, maghemite and hematite, are promising electrode active materials for lithium ion batteries due to their low cost, high capacity and environmental friendliness. Though the electrochemical properties of each kind of iron oxide nanoparticles have been intensively studied, systematic comparison of the three kinds of iron oxides is hardly reported. This paper reports the study and comparison of the electrochemical properties of magnetite, maghemite and hematite nanoparticles with the same shape and size. In this work, hematite and maghemite nanoparticles were obtained from commercial magnetite nanoparticles by thermal treatments at different conditions. Their crystalline structures were characterized by X-ray diffraction (XRD), their magnetic properties were measured by a vibration sample magnetometer (VSM), and their particle morphologies were analyzed by scanning electron microscopy (SEM). Composite electrodes were made from iron oxide nanoparticles with carbon black as the conducting material and PVDF as the binding material (iron oxide : carbon black : PVDF = 70 : 15 : 15). Prototype lithium ion batteries (CR2032 button cells) were assembled with iron oxide composite electrodes as cathodes, metal lithium as anodes, and Celgard 2400 porous membrane as separators. The impedance and discharge-charge behaviors were characterized by a Solartron electrochemical workstation and an Arbin battery tester, respectively. It was found that at the same shape and size, hematite nanoparticles has higher specific discharge and charge capacities than magnetite and maghemite nanoparticles.
机译:氧化铁纳米颗粒,包括磁铁矿,磁赤铁矿和赤铁矿,因其低成本,高容量和环境友好性,成为锂离子电池的有希望的电极活性材料。尽管已经对每种氧化铁纳米颗粒的电化学性质进行了深入研究,但几乎没有关于这三种氧化铁的系统比较的报道。本文报道了具有相同形状和大小的磁铁矿,磁赤铁矿和赤铁矿纳米粒子的电化学性能的研究和比较。在这项工作中,通过在不同条件下进行热处理,从商业磁铁矿纳米颗粒中获得了赤铁矿和磁赤铁矿纳米颗粒。通过X射线衍射(XRD)表征它们的晶体结构,通过振动样品磁力计(VSM)测量它们的磁性,并且通过扫描电子显微镜(SEM)分析它们的颗粒形态。复合电极由具有碳黑作为导电材料和PVDF作为粘结材料的氧化铁纳米颗粒制成(氧化铁:炭黑:PVDF = 70:15:15)。原型锂离子电池(CR2032纽扣电池)以氧化铁复合电极为正极,金属锂为负极,Celgard 2400多孔膜为隔膜进行组装。阻抗和放电行为分别通过Solartron电化学工作站和Arbin电池测试仪进行表征。发现在相同形状和尺寸下,赤铁矿纳米粒子比磁铁矿和磁赤铁矿纳米粒子具有更高的比放电和电荷容量。

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