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Xiaojie Xu, Huachen Lin, Jinrui Ding, Pengjie Zhou, Yulong Ying, Hong Jia, Longhua Li, Yu Liu. NiCoMn-LDH with core-shell heterostructures based on CoS nanotube arrays containing multiple ion diffusion channels for boosted supercapacitor applications. Green Energy&Environment. doi: 10.1016/j.gee.2024.06.002
Citation: Xiaojie Xu, Huachen Lin, Jinrui Ding, Pengjie Zhou, Yulong Ying, Hong Jia, Longhua Li, Yu Liu. NiCoMn-LDH with core-shell heterostructures based on CoS nanotube arrays containing multiple ion diffusion channels for boosted supercapacitor applications. Green Energy&Environment. doi: 10.1016/j.gee.2024.06.002

NiCoMn-LDH with core-shell heterostructures based on CoS nanotube arrays containing multiple ion diffusion channels for boosted supercapacitor applications

doi: 10.1016/j.gee.2024.06.002
  • Nanostructure engineering and composition rationalization are crucial for materials to become candidates for high-performance supercapacitor. Herein, a novel core-shell heterostructured electrode, combining CoS hollow nanorods with NiCoMn-layered double hydroxides (LDH) ternary metal nanosheets, were prepared on carbon cloth by reasonably controlled vulcanization and electrodeposition. By optimizing electrodeposition conditions, the material's structure and properties can be fine-tuned. The enhanced capacitance of the optimized carbon cloth (CC)@CoS/NiCoMn-LDH- 300 electrode (4256.0 F g-1) lies in the open space provided by CoS and the establishment of a new charge transfer channel across the interfaces of CC@CoS/NiCoMn-LDH-300 nanosheets. This is further demonstrated by Density functional theory (DFT) simulations based on OH- adsorption energy, which produces faster redox charge kinetics and significantly enhances the electrode’s energy storage capacity. The hybrid supercapacitor, integrating the optimized CC@CoS/NiCoMnLDH-300 electrode with active carbon, demonstrates the highest energy density of 86 Wh kg-1 (under the power density of 850 W kg-1) and the long cycle stability of 89.7%. This study aims to go beyond simple binary LDH by constructing a ternary LDH with a hierarchical core-shell heterostructure to provide an effective and feasible new concept for high-performance supercapacitor electrode materials via rational structure design.

     

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      沈阳化工大学材料科学与工程学院 沈阳 110142

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