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    贾聪圃, 周罗肖, 何颖, 汪谌, 程起林. 泡沫铜负载氧化铜/钴锰氢氧化物复合纳米线阵列的制备及其电化学性能[J]. 华东理工大学学报(自然科学版), 2018, (3): 323-330. DOI: 10.14135/j.cnki.1006-3080.20170719002
    引用本文: 贾聪圃, 周罗肖, 何颖, 汪谌, 程起林. 泡沫铜负载氧化铜/钴锰氢氧化物复合纳米线阵列的制备及其电化学性能[J]. 华东理工大学学报(自然科学版), 2018, (3): 323-330. DOI: 10.14135/j.cnki.1006-3080.20170719002
    JIA Cong-pu, ZHOU Luo-xiao, HE Ying, WANG Chen, CHENG Qi-lin. Synthesis and Electrochemical Properties of Copper Oxides/Co-Mn Hydroxides Composite Nanowire Arrays on Copper Foam[J]. Journal of East China University of Science and Technology, 2018, (3): 323-330. DOI: 10.14135/j.cnki.1006-3080.20170719002
    Citation: JIA Cong-pu, ZHOU Luo-xiao, HE Ying, WANG Chen, CHENG Qi-lin. Synthesis and Electrochemical Properties of Copper Oxides/Co-Mn Hydroxides Composite Nanowire Arrays on Copper Foam[J]. Journal of East China University of Science and Technology, 2018, (3): 323-330. DOI: 10.14135/j.cnki.1006-3080.20170719002

    泡沫铜负载氧化铜/钴锰氢氧化物复合纳米线阵列的制备及其电化学性能

    Synthesis and Electrochemical Properties of Copper Oxides/Co-Mn Hydroxides Composite Nanowire Arrays on Copper Foam

    • 摘要: 以泡沫铜为基体,采用简单的热氧化和恒压电沉积两步法在基体表面生长分级结构的氧化铜(CuxO)/钴锰层状双金属氢氧化物(Co-Mn LDH)复合纳米线阵列。对制得的复合材料的结构及形貌进行了表征,并研究了其电化学性能。结果表明:在泡沫铜基体上生长了长度约为5~10 μm,直径约为50 nm的纳米线阵列。复合纳米线阵列作为超级电容器电极材料在1 A/g的电流密度下,其比电容达305.0 F/g;当电流密度增大至10 A/g时,比电容保持率仍达到70.7%。在1 A/g的电流密度下,复合电极材料经2 000次充放电循环后,仍有80.4%的比电容保持率。

       

      Abstract: In recent years, design and fabrication of advanced electrode materials to improve the energy density and power density of supercapacitors (SCs) have been the focus of energy storage fields. Rational constructing core-shell nanostructures on conductive substrate holds a promising approach for developing high-performance SCs. In this work, the hierarchical copper oxides/Co-Mn layered double hydroxides (CuxO/Co-Mn LDH) composite nanowire arrays grown on copper foam were fabricated by a simple thermal oxidation with potentiostatic electrodeposition. The composites with different electrodeposition time were obtained. The structure and morphology of composites were investigated via field emission scanning electron microscopy (FESEM), transmission electron microscopy (TEM), X-ray diffraction (XRD) and X-ray photoelectron spectroscopy (XPS). The electrochemical properties of composites were investigated with cycle voltammetry (CV), galvanostatic charge-discharge (GCD) and electrochemical impedance spectrum (EIS). The results showed that thin layer of interdigitated Co-Mn LDH was deposited uniformly on the surface of CuxO nanowires with the deposition of 18 min. The length of the composite nanowires was 5~10 μm and the diameter was around 50 nm. Interlaced Co-Mn LDH nanosheets deposited on CuxO nanowires could effectively provide large electroactive area for fast and reversible reaction to enhance the capacitance, while CuxO nanowires improved the mechanical robustness of the active materials on Cu foam to ensure their structural stability during redox reaction. Meanwhile, the composite structures on Cu foam could be directly used as electrode materials without addition of polymer binder or additive and thus decrease internal resistance. Consequently, the composite electrode material exhibited a specific capacitance of 305.0 F/g at 1 A/g and the capacitance retention was 70.7% at 10 A/g and good cycling stability (80.4% capacitance retention after 2 000 cycles at 1 A/g). These attractive results demonstrated that core-shell CuxO/Co-Mn LDH with hierarchical architecture could be promising electrode materials for high-performance supercapacitors.

       

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