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Shape dependence of the electrochemical properties of alpha-Fe2O3 particles as anode materials for lithium ion batteries

机译:锂离子电池负极材料α-Fe2O3颗粒的电化学性能与形状的关系

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摘要

Hematite (alpha-Fe2O3) nanoparticles with different shapes were prepared by hydrothermal treatment of ferric solution at 180 degrees C with the addition of different amounts of water to the EDA ratio in the reaction systems. The particle shapes obtained from the reaction systems include irregular polyhedra, hexagonal bipyramids, elongated bipyramids, and rhombohedra as the amount of EDA in the reaction systems increased. The electrochemical measurements of these different particle shapes as materials for lithium ion batteries showed that the best performance both in specific capacity and rate capacity were observed to be the shape of hexagonal bipyramid. The results showed that, beside the size of the particles, the shape of the particles being confined by specific surfaces is another important factor that dictates the electrochemical performance of alpha-Fe2O3.
机译:通过在180摄氏度的条件下对铁溶液进行水热处理,并在反应体系中的EDA比中添加不同量的水,制备出具有不同形状的赤铁矿(α-Fe2O3)纳米粒子。随着反应体系中EDA的增加,从反应体系获得的颗粒形状包括不规则多面体,六边形双锥体,细长的双锥体和菱形。这些不同的颗粒形状作为锂离子电池材料的电化学测量表明,在比容量和倍率容量方面的最佳性能均被观察为六边形双锥体的形状。结果表明,除了颗粒尺寸之外,被特定表面限制的颗粒形状是决定α-Fe2O3电化学性能的另一个重要因素。

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