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- W4309796656 abstract "Tailored nanoarchitecture design is of great significance for the performance of supercapacitors, especially for heterostructure composites. Herein, we report a facile two-step hydrothermal strategy to prepare Co3O4@MnO2 nanocomposites, where the well-aligned Co3O4 nanograss array is capable of loading numerous and uniformly vertical MnO2 nanosheets that present an open structure of a nanoflower pattern. The microstructure of the nanograsses and nanoflower can be regulated by adjusting the hydrothermal process. The optimized Co3O4@MnO2 displays a Schlumbergera bridgesii-like nanostructure with a maximum specific capacitance of 5038.19 F g–1 as well as excellent capacity retention of as high as 97.48% after undergoing 5000 cycles at 10 A g–1. The assembled symmetric supercapacitor also exhibits a high energy density of 1467.23 Wh kg–1 and a maximum power density of 5500.07 W kg–1. This work provides a tunable strategy for the fabrication of heterostructure nanostructured composite for supercapacitor." @default.
- W4309796656 created "2022-11-29" @default.
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- W4309796656 date "2022-11-23" @default.
- W4309796656 modified "2023-09-27" @default.
- W4309796656 title "Facile Synthesis of Schlumbergera Bridgesii-Like Nanostructured Co<sub>3</sub>O<sub>4</sub>@MnO<sub>2</sub> as High Performance Electrode Materials for Supercapacitors" @default.
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- W4309796656 doi "https://doi.org/10.1021/acs.iecr.2c03221" @default.
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