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首页> 外文期刊>Advanced Sustainable Systems >Core–Shell Nanostructured Hybrid of Nickel Hydroxide Supported on Copper Hydroxide Nanorod Arrays Used as Advanced Supercapacitors with High Efficiency and Ultraperformance
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Core–Shell Nanostructured Hybrid of Nickel Hydroxide Supported on Copper Hydroxide Nanorod Arrays Used as Advanced Supercapacitors with High Efficiency and Ultraperformance

机译:核壳纳米镍的结合氢氧化氢氧化铜支持奈米棒数组作为先进的超级电容器高效率和Ultraperformance

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摘要

Abstract The fascinating search for ultraefficient and high‐powered supercapacitors has stimulated continuous exploration of diverse energy storage materials like transition metal hydroxides with core–shell structure. Thus in this paper, a novel core–shell hybrid electrode material of nickel hydroxide (Ni(OH)2) supported on copper hydroxide nanorod arrays (Cu(OH)2 NAs), which is constructed on copper foam as the substrate by an in situ chemical oxidation reaction accompanied by chemical bath deposition, is reported. As a result, it is found that the pre‐fabricated Cu(OH)2@Ni(OH)2 electrode has a remarkable areal capacitance of 9.27 F cm−2 and good cycling performance (retains 92.38% after 6000 cycles) compared to its counterpart Cu(OH)2 nanorods (88.57%). Additionally, the Cu(OH)2@Ni(OH)2 material, as a positive electrode, can also be used to assemble a hybrid supercapacitor (HSC) while activated carbon is chosen as the negative electrode. As a result, the constructed HSC device with the desired working voltage of 0–1.5 V can light up the light‐emitting diode indicator, proving the potential practicability of the pre‐fabricated HSC device.
机译:文摘ultraefficient迷人的搜索和高的超级电容器有刺激不断探索多样化的能源存储过渡金属氢氧化物等材料核壳结构。核壳混合的镍电极材料氢氧化(Ni (OH) 2)支持氢氧化铜奈米棒阵列(铜(OH) 2 NAs),这是建在铜衬底的泡沫原位化学氧化反应陪同由化学浴沉积报道。结果,发现提前编造的铜(OH) 2 @ni (OH) 2电极具有显著的区域电容的9.27 F厘米−2和良好的循环性能(保留92.38%后6000周期)相比,其对应的铜(OH) 2纳米棒(88.57%)。材料,作为正电极,也可以用于组装混合超级电容器(HSC)而活性炭是选为负电极。设备所需的工作电压0 - 1.5 V可以点亮灯的发光二极管指标,证明了潜在的实用性提前制作HSC的设备。

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