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- W3177613051 abstract "MnO2 [email protected] nanotube-in-nanotube is rationally constructed through carbonization of tannic acid-treated zeolitic imidazolate framework-8 string of carbon nanotubes and subsequent chemical reaction of KMnO4 and carbon. The ultrathin MnO2 nanosheets are intimately coupled on the surface of carbon nanotube-in-nanotube. The composite shows large specific surface area (126.6 m2 g−1) and pore volume (0.4 cm3 g−1). Comparative studies of cyclic voltammetry curves and galvanostatic charge-discharge profiles indicate that for MnO2 [email protected] nanotube-in-nanotube, electrochemical activities and charge-discharge capabilities of MnO2 and carbon are both significantly improved. The cycling measurements reveal that the composite shows much higher reversible capacity and cycling stability than pure MnO2, carbon nanotubes, carbon nanotube-in-nanotube and MnO2 [email protected] nanotubes. The superior Li storage performance is attributed to synergistic effect of MnO2 nanosheets and carbon nanotube-in-nanotube. The ultrathin nanosheet structure of MnO2 and the unique nanotube-in-nanotube structure of carbon remarkably shorten diffusion paths of Li ions, facilitate transport of electrolyte ions, promote contact between electrode material/electrolyte, improve structural stability of the composite, increase electronic conductivity of MnO2, enhance reaction kinetics." @default.
- W3177613051 created "2021-07-19" @default.
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- W3177613051 date "2021-09-01" @default.
- W3177613051 modified "2023-10-16" @default.
- W3177613051 title "Preparation and high-performance lithium storage of intimately coupled MnO2 nanosheets@carbon nanotube-in-nanotube" @default.
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- W3177613051 doi "https://doi.org/10.1016/j.susmat.2021.e00312" @default.
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