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Hierarchical Co-based Porous Layered Double Hydroxide Arrays Derived via Alkali Etching for High-performance Supercapacitors

机译:通过碱蚀刻用于高性能超级电容器的等级Co基多孔层叠双氢氧化物阵列

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Hierarchical nanoarchitecture and porous structure can both provide advantages for improving the electrochemical performance in energy storage electrodes. Here we report a novel strategy to synthesize new electrode materials, hierarchical Co-based porous layered double hydroxide (PLDH) arrays derived via alkali etching from Co(OH)2@CoAl LDH nanoarrays. This structure not only has the benefits of hierarchical nanoarrays including short ion diffusion path and good charge transport, but also possesses a large contact surface area owing to its porous structure which lead to a high specific capacitance (23.75?F cm?2 or 1734?F g?1 at 5?mA cm?2) and excellent cycling performance (over 85% after 5000 cycles). The enhanced electrode material is a promising candidate for supercapacitors in future application.
机译:分层纳米建筑和多孔结构都可以提供改善能量存储电极中的电化学性能的优点。在这里,我们报告了一种新的策略来合成新电极材料,等级Co基多孔层叠双氢氧化物(PLDH)阵列通过CO(OH) 2 Xcoal LD​​H纳米载体的碱蚀刻来源。该结构不仅具有包括短离子扩散路径和良好电荷传输的层级纳米阵列的益处,而且由于其多孔结构也具有大的接触表面区域,这导致高比电容(23.75Ω·F cm 2 或1734?f g α1在5?ma cm Δ2)和优异的循环性能(5000次循环后超过85%)。增强电极材料是未来应用中超级电容器的有希望的候选者。

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