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首页> 外文期刊>Electrochimica Acta >Transition metal oxide-carbon composites as conversion anodes for sodium-ion battery
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Transition metal oxide-carbon composites as conversion anodes for sodium-ion battery

机译:过渡金属氧化物-碳复合材料作为钠离子电池的转换阳极

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Herein, we characterize various metal oxide-carbon composites, i.e. CuO-MCMB (mesocarbon microbeads), Fe2O3-MCMB and NiO-MCMB, as anode materials for application in sodium-ion battery. The electrodes, supposed to react through a conversion mechanism, are studied in terms of structure, morphology and electrochemical behavior in sodium cell. The results demonstrate a specific capacity of the order of 100 mAh g (1) for Fe2O3-MCMB and NiO-MCMB, and of about 300 mAh g (1) for CuO-MCMB. The remarkable performance of the latter suggests the copper oxide-based electrode as the preferred anode material for battery application. Indeed, further study aimed to clarify the Na/CuO-MCMB reaction mechanism is performed by ex-situ X-ray diffraction on electrode material cast onto aluminum support. The study suggests a partial conversion reaction for CuO-based anode that is considered suitable candidate in replacement of sodium metal, in efficient and safe Na-ion battery. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文中,我们表征了各种金属氧化物-碳复合材料,即CuO-MCMB(中碳微珠),Fe2O3-MCMB和NiO-MCMB,作为用于钠离子电池的负极材料。根据钠电池的结构,形态和电化学行为,研究了应该通过转换机制进行反应的电极。结果表明,Fe2O3-MCMB和NiO-MCMB的比容量约为100 mAh g(1),CuO-MCMB的比容量约为300 mAh g(1)。后者的卓越性能表明,氧化铜基电极是电池应用的优选阳极材料。确实,旨在阐明Na / CuO-MCMB反应机理的进一步研究是通过对铸在铝载体上的电极材料进行异位X射线衍射进行的。研究表明,在高效,安全的Na离子电池中,基于CuO的阳极发生了部分转化反应,被认为是替代钠金属的合适选择。 (C)2015 Elsevier Ltd.保留所有权利。

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