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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >High electrochemical performance of nanoporous Fe 3O 4/CuO/Cu composites synthesized by dealloying Al-Cu-Fe quasicrystal
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High electrochemical performance of nanoporous Fe 3O 4/CuO/Cu composites synthesized by dealloying Al-Cu-Fe quasicrystal

机译:纳米孔Fe的高电化学性能 3 o 4 / cu / cu / cu / cu复合材料,由Dealloying al合成 -cu-fe quasicstaltal

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摘要

AbstractQuasicrystal, an attractive type of material with special physical and chemical properties, has been considered as one of the most promising functional materials. Herein, Al65Cu23Fe12quasicrystal precursor alloy ribbons were prepared by arc-melting subsequently melt-spinning under a protective argon atmosphere. Unique Fe3O4/CuO/Cu with bicontinuous ligaments and nanopore channels structure was fabricated by a facile one-step chemical dealloying method in 2?M NaOH solutions at room temperature with controlled dealloying times (12?h, 24?h, 48?h, and 96?h). X-ray diffraction (XRD), scanning electron microscopy (SEM), and energy dispersive X-ray spectroscopy (EDX) analysis, transmission electron microscopy (TEM), and high resolution transmission electron microscopy (HRTEM) are employed to study the crystal structure and microstructural evolution of these Fe3O4/CuO/Cu composites. The unique composites combined both advantages of Fe3O4/CuO with high capacities and Cu with excellent conductive as anode material for lithium ion batteries. Remarkably, the successful integration of Fe3O4, CuO and Cu as well as the specific 3D ligament-pore structure, which could alleviate the volume changes during the repeating charge and discharge cycles, endowed the as-prepared electrode material with higher reversible capacity, excellent cycle life, and good rate performance due to the synergetic effect. Cyclic voltammetry (CV) and galvanostatic charge–discharge measurements had been aimed at evaluating the lithium storage performances of the Fe3O4/CuO/Cu composites. A high specific capacity of 738.4?mAh g?1could be achieved up to 550 cycles at a current density of 200?mA?g?1. Therefore, the as synthesized Fe3O4/CuO/Cu composites exhibit excellent electrochemical stability and reactivity, which might open a new avenue to explore the application of quasicrystals.Highlights?Composite Fe3O4/CuO/Cu was synthesized by dealloying Al-Cu-Fe quasicrystal.?Fe3O4/CuO/Cu composite possessed the specific 3D ligament-pore structure.?Cu acts as an efficient conducting component.?The Fe3O4/CuO/Cu composite exhibited excellent electrochemical properties for lithium-ion batteries.]]>
机译:<![CDATA [ 抽象 拟rystal,一种具有特殊物理和化学性质的有吸引力的材料,被认为是最有前途的一种功能材料。在此,AL 65 CU 23 FE 12 通过随后在保护性氩气氛下熔化旋转的熔融熔化来制备拟Crystal前体合金丝带。 OUTIQUE FE 3 O 4 / CUO / CU与双连续韧带和纳米孔通道结构制成通过在室温下在2·M NaOH溶液中进行一款容易的一步化学解放方法,受到控制的探讨时间(12?H,24℃,48℃和96ΩH)。 X射线衍射(XRD),扫描电子显微镜(SEM)和能量色散X射线光谱(EDX)分析,透射电子显微镜(TEM)和高分辨率透射电子显微镜(HRTEM)研究了晶体结构和这些FE 3 O 4 / CU / CU / CU复合材料的微观结构演变。独特的复合材料组合FE 3 O 4 / CUO,具有高容量和CU具有优异的导电性作为锂离子电池的阳极材料。值得注意的是,FE 3 O 4 ,CUO和CU以及特定的3D韧带结构,可以缓解在重复充电和放电循环期间的体积变化,赋予了更准备的电极材料,具有较高的可逆容量,优异的循环寿命和由于协同效应而良好的速率性能。循环伏安法(CV)和镀锌电荷 - 放电测量旨在评估Fe 3 O 4 / CUO / CU复合材料。 738.4的特定容量为738.4?MAH G 1 可以在电流密度为200Ω·G ?1 。因此,如合成FE 3 O 4 / CU / CU复合材料表现出优异的电化学稳定性和反应性,这可能打开一个新的途径来探索拟rγrals的应用。 亮点 Composite FE 3 O 4 / CUO通过Dealloying al-Cu-Fe Quasicstal合成/ Cu。 Fe 3 o 4> / CuO / Cu复合材料具有特定的3D韧带孔结构。 Cu充当有效的导电组件。 < CE:列表 - 项目ID =“U0025”> fe 3 O 4 / CUO / Cu复合材料表现出用于锂离子电池的优异的电化学性能。 ]]>

著录项

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  • 作者单位

    Key Laboratory of Applied Chemistry and Nanotechnology at Universities of Jilin Province Department of Chemistry &

    Environmental Engineering Changchun University of Science and Technology;

    Key Laboratory of Applied Chemistry and Nanotechnology at Universities of Jilin Province Department of Chemistry &

    Environmental Engineering Changchun University of Science and Technology;

    Key Laboratory of Applied Chemistry and Nanotechnology at Universities of Jilin Province Department of Chemistry &

    Environmental Engineering Changchun University of Science and Technology;

    Key Laboratory of Applied Chemistry and Nanotechnology at Universities of Jilin Province Department of Chemistry &

    Environmental Engineering Changchun University of Science and Technology;

    Key Laboratory of Applied Chemistry and Nanotechnology at Universities of Jilin Province Department of Chemistry &

    Environmental Engineering Changchun University of Science and Technology;

    Key Laboratory of Applied Chemistry and Nanotechnology at Universities of Jilin Province Department of Chemistry &

    Environmental Engineering Changchun University of Science and Technology;

    Key Laboratory of Applied Chemistry and Nanotechnology at Universities of Jilin Province Department of Chemistry &

    Environmental Engineering Changchun University of Science and Technology;

    State Key Laboratory of Rare Earth Resource Utilization Changchun Institute of Applied Chemistry CAS;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 合金学与各种性质合金;金属材料;
  • 关键词

    Quasicrystal; Fe3O4/CuO/Cu; Lithium ion battery; Anode materials; Transition metal oxides;

    机译:拟晶;Fe3O4 / CuO / Cu;锂离子电池;阳极材料;过渡金属氧化物;

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