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首页> 外文期刊>Electrochimica Acta >Study of the lithium insertion-deinsertion mechanism in nanocrystalline γ-Fe{sub}2O{sub}3 electrodes by means of electrochemical impedance spectroscopy
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Study of the lithium insertion-deinsertion mechanism in nanocrystalline γ-Fe{sub}2O{sub}3 electrodes by means of electrochemical impedance spectroscopy

机译:电化学阻抗谱研究纳米晶γ-Fe{sub} 2O {sub} 3电极中锂的插入-脱嵌机理

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摘要

Lithium intercalation hosts are a key point to the energy density of the largely used LiCoO{sub}2 (even if of high cost and toxicity) as well as of manganese oxides which have been investigated most extensively. Iron oxides are attractive electrode materials for low-voltage rechargeable lithium batteries from both cost and environmental standpoints. However, search for iron oxides of conventional crystalline structures and micrometer particle sizes as lithium intercalation cathodes, has been greeted with disappointing results. Here we report on the synthesis, characterizations, electrochemical study and electrochemical impedance spectroscopy (EIS) of a nanocrystalline γ-Fe{sub}2O{sub}3 that simultaneously exhibits high lithium insertion capacity and good capacity retention upon cycling. These properties reveal thermodynamics of the nanocrystalline material inherently different from those of its microcrystalline counterpart. Moreover, EIS showed that the intercalation process of the lithium ion occurs according to two processes involving first the reduction of the surface Fe{sup}(3+) with concomitant charge neutralization by Li{sup}+ ions onto the surface defects of the nanoparticle followed by the reduction of the core Fe{sup}(3+) with insertion of the Li{sup}+ deeper in the particle.
机译:锂嵌入主体是广泛使用的LiCoO {sub} 2(即使具有高成本和毒性)以及已被广泛研究的锰氧化物的能量密度的关键点。从成本和环境的角度来看,氧化铁是用于低压可再充电锂电池的有吸引力的电极材料。然而,令人失望的结果是寻找具有常规晶体结构和微米粒度的氧化铁作为锂嵌入阴极。在这里,我们报道了纳米晶体γ-Fe{sub} 2O {sub} 3的合成,表征,电化学研究和电化学阻抗谱(EIS),该纳米晶体同时显示出高的锂插入容量和循环时的良好容量保持率。这些性质揭示了纳米晶体材料的热力学固有地不同于其微晶对应物的热力学。此外,EIS显示锂离子的嵌入过程是根据两个过程发生的,这些过程包括首先还原表面Fe {sup}(3+)以及伴随的Li {sup} +离子将电荷中和到纳米粒子的表面缺陷上然后通过在颗粒中更深处插入Li {sup} +来还原铁芯Fe {sup}(3+)。

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