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Post-synthesis isomorphous substitution of layered Co-Mn hydroxide nanocones with graphene oxide as high-performance supercapacitor electrodes

机译:Post-synthesis同形替换分层氢氧化Co-Mn nanocones与氧化石墨烯高性能的超级电容器电极

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摘要

Layered metal hydroxides are promising materials for electrochemical energy conversion and storage. Generally, compared with layered monometallic hydroxides, layered bimetallic hydroxides have more excellent electrochemical performance due to abundant redox reactions. Unfortunately, layered bimetallic hydroxides cannot be usually achieved through coprecipitation and/or homogeneous precipitation. Herein, we demonstrate that layered Co-Mn hydroxide nanocones (NCs) can be successfully fabricated via post-synthesis isomorphous substitution under mild conditions. In particular, the specific capacity and cycling stability of layered Co-Mn hydroxide NCs are remarkably enhanced in comparison with those of layered Co hydroxide NCs. Furthermore, the resulting layered Co-Mn hydroxide NCs and graphene oxide (GO) composite (GO/Co-Mn NCs) exhibits a high specific capacity of 677 C g(-1) at 3 A g(-1) and an excellent capacity retention of 95% after 2000 cycles. Asymmetric supercapacitor cells employing GO/Co-Mn NCs as the positive electrode and activated carbon (AC) as the negative electrode can achieve a high specific capacity of 189 C g(-1) at 3 A g(-1). This method provides a viable protocol for constructing efficient electrodes of layered bimetallic hydroxides for sustainable electrochemical energy storage.
机译:层状金属氢氧化物有前途的材料电化学能量转换和存储。使用单金属的氢氧化物,层状双金属氢氧化物有更多优秀的电化学由于丰富的氧化还原反应性能。不幸的是,层状双金属氢氧化物通常不能通过共同沉淀和/或均匀沉淀。在此,我们证明了分层Co-Mn氢氧化nanocones (nc)可以成功通过post-synthesis制造的同形在温和条件下替代。具体来说,特定的能力和骑自行车氢氧化稳定分层Co-Mn nc与这些相比显著增强分层的氢氧根nc公司。氢氧化产生的分层Co-Mn nc和石墨烯氧化物(去)复合(去/ Co-Mn nc)展品比容量高677 C g (1)在3 g(1)和一个优秀的能力保留2000个周期后的95%。超级电容器单元采用去/ Co-Mn nc正极和活性炭(AC)作为负电极可以实现高特定容量的189 C g (1) 3 g(1)。这种方法提供了一个可行的协议构建有效的分层的电极双金属氢氧化物可持续电化学储能。

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