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首页> 外文期刊>Journal of Energy Storage >Incorporating redox additives in sodium hydroxide electrolyte for energy storage device with the nickel cobalt molybdenum oxide active material
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Incorporating redox additives in sodium hydroxide electrolyte for energy storage device with the nickel cobalt molybdenum oxide active material

机译:在用于能量存储设备的氢氧化钠电解液中加入氧化还原添加剂和镍钴钼钼活性物质

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摘要

To enhance the redox reactions and improve the energy storage ability, redox additives have been widely incorporated in the electrolyte to assemble the battery supercapacitor hybrid (BSH). However, due to the possible generation of numerous redox reactions for the metal oxide with abundant redox states, it is limited to apply the redox additives in the multiple metal oxide system for producing more redox reactions and promoting the energy storage. In this study, two redox additives of p-phenylenediamine (PPD) and K-3[Fe(CN)(6)] are incorporated in KOH electrolyte for fabricating BSH with the nickel cobalt molybdenum oxide active material. The addition of PPD in the electrolyte causes the reduction of the specific capacitance (C-F) for the BSH, while the greatly enhanced C-F value is obtained for the BSH applying K-3[Fe(CN)(6)] as the redox additive in the electrolyte. With the optimized K-3[Fe(CN)(6)] concentration in the electrolyte, the BSH shows the C-F value of 3.13 F/cm(2) at 10 mV/s along with the maximum energy density of 48.0 Wh/kg at 756.0 W/kg. The Coulombic efficiency higher than 95% and capacitance retention of 75% are obtained for the optimized BSH. This work firstly achieves the opposite results for the BSH with different sorts of redox additives in electrolyte. It is suggested that the ion size and the compatibility between the ions in the electrolyte and the pores in the active material are important to decide the capability for energy storage.
机译:为了增强氧化还原反应并提高能量存储能力,氧化还原添加剂已广泛地混入电解液中以组装电池超级电容器混合动力(BSH)。然而,由于对于具有丰富氧化还原态的金属氧化物可能产生大量的氧化还原反应,因此限制在多金属氧化物体系中使用氧化还原添加剂以产生更多的氧化还原反应并促进能量存储。在这项研究中,将两种对苯二胺(PPD)和K-3 [Fe(CN)(6)]的氧化还原添加剂掺入KOH电解质中,以用镍钴钼钼活性材料制造BSH。在电解液中添加PPD会导致BSH的比电容(CF)降低,而使用K-3 [Fe(CN)(6)]作为氧化还原添加剂的BSH则获得了大大提高的CF值。电解质。在电解液中具有优化的K-3 [Fe(CN)(6)]浓度时,BSH在10 mV / s时的CF值为3.13 F / cm(2),最大能量密度为48.0 Wh / kg功率为756.0 W / kg。优化的BSH的库仑效率高于95%,电容保持率为75%。这项工作首先在电解质中使用不同种类的氧化还原添加剂的BSH取得了相反的结果。建议离子尺寸以及电解质中的离子与活性材料中的孔之间的相容性对于决定能量存储的能力很重要。

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