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新能源汽车电池负极材料的制备与电化学性能 被引量:5
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作者 包科杰 路凌然 《电源技术》 CAS 北大核心 2021年第11期1420-1423,1509,共5页
采用静电纺丝法和退火相结合的方法制备了电池负极Fe_(7)Se_(8)/N-CNFs复合材料,并与块状Fe_(7)Se_(8)进行了微观结构和电化学性能对比分析。结果表明,复合材料中氮掺杂碳纤维表面弥散分布着细小Fe_(7)Se_(8)粒子(比表面积约50.2 m^(2)/... 采用静电纺丝法和退火相结合的方法制备了电池负极Fe_(7)Se_(8)/N-CNFs复合材料,并与块状Fe_(7)Se_(8)进行了微观结构和电化学性能对比分析。结果表明,复合材料中氮掺杂碳纤维表面弥散分布着细小Fe_(7)Se_(8)粒子(比表面积约50.2 m^(2)/g),而块状Fe_(7)Se_(8)电极中Fe_(7)Se_(8)粒子团聚成块状(比表面积约为9.9 m^(2)/g)。经过100次循环后,复合材料电极和块状Fe_(7)Se_(8)电极的容量保持率分别为91.4%和76.4%;复合电极材料在0.2~20 A/g电流密度下的放电比容量都要高于块状Fe_(7)Se_(8)电极。在电流密度高于2 A/g时,Fe_(7)Se_(8)纳米粒子/氮掺杂碳纤维复合材料就具有相较Fe_(7)Se_(8)/N掺杂碳、NiSe_(2)/C中空微球和MoSe_(2)/CNT等更高的容量;Fe_(7)Se_(8)纳米粒子/氮掺杂碳纤维复合材料具有相较于块状Fe_(7)Se_(8)电极更好的高倍率放电性能,这主要与Fe_(7)Se_(8)粒子较好地锚定在N-CNFs上起到协同作用有关。 展开更多
关键词 fe_(7)se_(8) 碳纤维 复合材料 制备 电化学性能
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Formation of hierarchical Fe7Se8 nanorod bundles with enhanced sodium storage properties 被引量:3
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作者 Wenzhi Tian Wenzhe Ma +3 位作者 Zhenyu Feng Fang Tian Haibo Li Jing Liu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2020年第5期97-105,共9页
Ordered hierarchical architectures are attractive candidates for electrochemical energy storage applications.Herein,a facile self-template strategy is applied to prepare Fe7Se8 architectures with a monolithic structur... Ordered hierarchical architectures are attractive candidates for electrochemical energy storage applications.Herein,a facile self-template strategy is applied to prepare Fe7Se8 architectures with a monolithic structure via a self-synthesized single precursor and subsequent calcination at high temperature.With the support of oleylamine,the precursor is structurally targeted to engineer the Fe7Se8 microstructure,featuring nanorod bundles arranged along the longitudinal direction.Because of their ordered hierarchical structure,the Fe7Se8 nanorod bundles deliver a high reversible capacity of 300 m Ah g^-1 at 0.5 A g^-1,along with exceptional rate capability up to 20 A g^-1 and long-term cycle life over 8000 cycles,which represents the highest stability of Fe7Se8 anodes for sodium-ion batteries reported to date.The feasibility of the present strategy to prepare metal selenide structures highlights its promising potential for the rational and effective engineering of electrode materials responsible for the electrochemical performance of energy storage systems. 展开更多
关键词 fe7se8 HIERARCHICAL structure Nanorod BUNDLES Sodium-ion BATTERIES OLEYLAMINE
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