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首页> 外文期刊>Applied Surface Science >Growth of cobalt-aluminum layered double hydroxide nanosheets on graphene oxide towards high performance supercapacitors: The important role of layer structure
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Growth of cobalt-aluminum layered double hydroxide nanosheets on graphene oxide towards high performance supercapacitors: The important role of layer structure

机译:氧化石墨烯上的钴铝层状双氢氧化物纳米片向高性能超级电容器的生长:层结构的重要作用

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Layered CoAl LDH (Cobalt-Aluminum layered double hydroxide) has been identified as a promising active electrode material for pseudocapacitors. However, some issues of CoAl LDH, such as poor conductivity and aggregation, limited its large-scale practical application. In addition, vague understanding of the role of the CoAl LDH's layer structure in pseudocapacitance process might mislead the research community on material modification. Herein, growth of CoAl LDH nanosheets with and without graphene oxide (GO) is prepared by hydrothermal method. To evaluate the role of layer structure in pseudocapacitance process, the CoOOH nanosheets with and without GO are also prepared by combining hydrothermal method with alkali etching treatment. As pseudocapacitance electrode material, the GO@CoAl LDH exhibits surpassing specific capacitance of 1725.71 F g(-1) at a current density of 1 A g(-1) and optimal 87.73% capacitance retention at 7 A g(-1) which are much higher than the other as-obtained materials. The study provides not only a better perspective to explore the importance of LDH layered structure during the electrochemical process, but also a direction to subsequent design of the novel Co-based or LDH-based electrode materials.
机译:层状CoAl LDH(钴铝层状双氢氧化物)已被确定为伪电容器的有希望的活性电极材料。但是,CoAl LDH的一些问题,例如导电性和聚集性差,限制了其大规模的实际应用。此外,对CoAl LDH层结构在伪电容过程中作用的模糊理解可能会误导研究界进行材料改性。在此,通过水热法制备具有和不具有氧化石墨烯(GO)的CoAl LDH纳米片的生长。为了评估层结构在假电容过程中的作用,还通过将水热法与碱蚀刻处理相结合来制备具有和不具有GO的CoOOH纳米片。作为假电容电极材料,GO @ CoAl LDH在1 A g(-1)的电流密度下显示出超过1725.71 F g(-1)的比电容,在7 A g(-1)时具有87.73%的最佳电容保持率远远高于其他获得的材料。该研究不仅为探索LDH层状结构在电化学过程中的重要性提供了更好的视角,而且为新型Co基或LDH基电极材料的后续设计提供了方向。

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