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首页> 外文期刊>Electrochimica Acta >Synthesis of bimetallic Ni xCo 1-xP hollow nanocages from metal-organic frameworks for high performance hybrid supercapacitors
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Synthesis of bimetallic Ni xCo 1-xP hollow nanocages from metal-organic frameworks for high performance hybrid supercapacitors

机译:Bimetallic Ni的合成 x co 1-x P空心纳米来自金属 - 有机框架的空心纳米病 高性能杂交超级电容器

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Hollow nanostructures are favorable for electrode materials to enhance their energy storage performance due to their unique structural features. In this work, hollow bimetallic phosphide (NixCo1-xP) was fabricated via etching treatment of ZIF-67 and further phosphorization. The as-obtained NixCo1-xP composites display a high specific capacity of 548?C?g?1at 1?A?g?1in 2?M KOH aqueous solution, excellent rate capability (83.7%, 77.6%, 71.7% and 66.2% capacity retention at 10, 20, 30 and 40?A?g?1), and remarkable cycling stability (86% capacity retention at 7?A?g?1after 3000 cycles). Furthermore, a hybrid supercapacitor, constructed by NixCo1-xP as anode and active carbon as cathode, exhibits excellent specific capacitance (115.8?F?g?1at 1?A?g?1), high gravimetric energy/power density (31.52?Wh kg?1at 700?W?kg?1), and outstanding long-term cycling stability (98.3% capacitance retention even after 10000 cycles). The excellent electrochemical performance should be attributed to the good interfacial contact between electrode and electrolyte, unique hollow structure with suitable surface area and good electrical conductivity of NixCo1-xP. The results suggest a great potential of NixCo1-xP composites in electrochemical energy storage devices.
机译:中空纳米结构有利于电极材料,以提高其由于其独特的结构特征而增强其能量存储性能。在这项工作中,通过蚀刻处理ZIF-67和进一步的磷化体制备中空双金属磷化物(NixCO1-XP)。获得的NixCo1-XP复合材料的高比容量为548?C?G?1At 1?a?g?1英寸2?M酸水溶液,优异的速率能力(83.7%,77.6%,71.7%和66.2%容量保持在10,20,30和40?a?g?1),并且显着的循环稳定性(86%的容量保留为7?a?g?1后3000个循环)。此外,由nixco1-xp作为阳极和活性炭作为阴极构成的混合超级电容器表现出优异的特定电容(115.8≤f≤v≤1a?a?a?g≤1),高重量能量/功率密度(31.52?wh kg?1at 700?w?kg?1),并且出色的长期循环稳定性(即使在10000次循环之后也是98.3%的电容保留)。优异的电化学性能应归因于电极和电解质之间的良好界面接触,独特的中空结构,具有合适的表面积和NixCo1-XP的良好导电性。结果表明了电化学能量存储装置中NixCo1-XP复合材料的巨大潜力。

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