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干燥温度对纳米β-氢氧化镍团聚程度和循环伏安性能的影响
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作者 赵力 张翠芬 周德瑞 《中国有色金属学报》 EI CAS CSCD 北大核心 2003年第5期1125-1129,共5页
采用沉淀转化法制备出纳米级Ni(OH) 2 ,研究了干燥温度对材料团聚程度和电化学循环伏安性能的影响。XRD和TEM测试结果表明 :所制备的材料为纳米级 β Ni(OH) 2 ,晶粒尺寸在 10~ 10 0nm之间。干燥温度对纳米级Ni(OH) 2 的团聚程度有较... 采用沉淀转化法制备出纳米级Ni(OH) 2 ,研究了干燥温度对材料团聚程度和电化学循环伏安性能的影响。XRD和TEM测试结果表明 :所制备的材料为纳米级 β Ni(OH) 2 ,晶粒尺寸在 10~ 10 0nm之间。干燥温度对纳米级Ni(OH) 2 的团聚程度有较大影响 ,并可以在一定程度上控制材料的密度。循环伏安测试表明 :适当团聚的纳米级Ni(OH) 2 比微米级的具有更优越的电化学循环伏安性能 ,其质子扩散系数也较大。 展开更多
关键词 纳米材料 镍氢电池 正极材料 电化学性能 制备 氢氧化镍 干燥温度 团聚 循环伏安性能 粉末微电极
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Layer by layer synthesis of Sn-Co-C microcomposites and their application in lithium ion batteries 被引量:4
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作者 周向阳 邹幽兰 +2 位作者 杨娟 谢静 王松灿 《Journal of Central South University》 SCIE EI CAS 2013年第2期326-331,共6页
Alloy anodes were studied for pursuing Sn-based microcomposite synthesis, assembly and performance for lithium ion batteries. The self-assembled Sn-Co-C composites with nano-scaled microstructures were prepared via so... Alloy anodes were studied for pursuing Sn-based microcomposite synthesis, assembly and performance for lithium ion batteries. The self-assembled Sn-Co-C composites with nano-scaled microstructures were prepared via solution method and carbothermal technology. The morphology and physical structure were investigated with scanning electron microscope (SEM) and X-ray diffraction (XRD). The as-prepared materials were assembled to half cell coin for the purpose of discussing the galvanostatic cycling, cyclic voltammetry and rate-capability performance. Results reveal that nanoscaled CoSn 2 alloys covered with Sn and C layer by layer are wrapped by cross-linked porous carbon network to form spherical microstructure. This distinguishing feature of Sn-Co-C composites provides a possible solution to the problems of Sn particle aggregation and poor electron transport, and has strong effect on improving electrochemical performance. 展开更多
关键词 Sn-Co-C composite HYDROLYSIS carbothermal technology electrochemical performance lithium ion battery
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Electrochemical capacitors based on the composite of graphene and nickel foam
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作者 Songwei Li Min Wang Yongfu Lian 《Science China Chemistry》 SCIE EI CAS CSCD 2016年第4期405-411,共7页
An improved Hummers method was developed for the simple and efficient production of high-quality graphene oxide (GO), and the composite of GO and nickel foam (NF) (GO/NF) was fabricated by ultrasonication-vacuum... An improved Hummers method was developed for the simple and efficient production of high-quality graphene oxide (GO), and the composite of GO and nickel foam (NF) (GO/NF) was fabricated by ultrasonication-vacuum-assisted deposition of an aqueous solution of GO on NF. After chemical or thermal reduction, the composite of reduced GO and nickel foam (rGO/NF) was obtained. The electrochemical capacitance performance of rGO/NF was investigated using cyclic voltammetry and gal- vanostatic charge/discharge measurements. The chemically reduced rGO/NF composite (C-rGO/NF) exhibited high specific capacitance of 379 F/g at 1.0 A/g and 266.5 F/g at 10 A/g. We also prepared thermally reduced graphene oxide at 473 K in or- der to illuminate the difference in effect between the chemical and low-temperature thermal reduction methods on electro- chemical properties. The cycling performance of thermally reduced rGO/NF composite (T-rGO/NF) and C-rGO/NF had ~91% and ~95% capacitance retention after 2000 cycles in a 6 mol/L KOH electrolyte, respectively. Electrochemical experiments in- dicated that the obtained rGO/NF has very good capacitive performance and could be used as a potential application of elec- trochemical capacitors. Our work revealed high electrochemical capacitor performance of rGO/NF composite and provided a facile method of rGO/NF preparation. 展开更多
关键词 electrochemical capacitor graphene oxide nickel foam REDUCTION
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