首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Morphology-controlled preparation of a-Fe _2O _3 during evaporating aqueous FeCl _3 solution and investigating the electrochemical properties of various a-Fe _2O _3 morphologies
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Morphology-controlled preparation of a-Fe _2O _3 during evaporating aqueous FeCl _3 solution and investigating the electrochemical properties of various a-Fe _2O _3 morphologies

机译:在FeCl _3水溶液蒸发过程中形态控制的a-Fe _2O _3制备以及研究各种a-Fe _2O _3形态的电化学性质

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摘要

Morphology-controlled preparation of a-Fe _2O _3 has been successfully realized by evaporating aqueous FeCl _3 solution. By just simply changing the reaction temperature and time, nanorods, peanut-like and sphere-like morphologies, of a-Fe _2O _3 could be obtained. The elemental nanorods have a width range of 10-20 nm. On the basis of time-dependent experiments, the formation mechanisms of various nanostructures were proposed. The dynamic formation process showed that with increasing reaction temperature, the outward bending played critical role on the morphology evolution. Furthermore, when tested as anodes, the as-obtained a-Fe _2O _3 nanostructures showed structure-dependent electrochemical properties. Among them, the a-Fe _2O _3 nanorods exhibited ultrahigh reversible capacity and excellent capacity retention over 50 cycles.
机译:通过蒸发FeCl _3水溶液已成功实现了a-Fe _2O _3的形貌控制制备。仅通过简单地改变反应温度和时间,就可以得到α-Fe_2O _3的纳米棒,花生状和球状形态。元素纳米棒的宽度范围为10-20 nm。在时变实验的基础上,提出了各种纳米结构的形成机理。动态形成过程表明,随着反应温度的升高,向外弯曲对形态演变起关键作用。此外,当作为阳极测试时,所获得的α-Fe_2O _3纳米结构表现出结构依赖性的电化学性质。其中,a-Fe _2O _3纳米棒在50个循环中表现出超高的可逆容量和出色的容量保持率。

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