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Hydrangea-like Mesoporous Carbon Architectures Embedded with MnOx Nanoparticles for Solid-State Asymmetric Supercapacitors with Enhanced Areal Capacitance
Hydrangea-like mesoporous carbon architectures embedded with MnO x nanoparticles (MnO x @C) are synthesized via the pyrolysis of Mn-MOFs (Mn-based metal organic frameworks) grwon on nickel foam as a binder-free electrode for asymmetric supercapacitors. The as-prepared MnO x @C featuring stacked carbon flakes with mesoporous structure and embedded with nanosized MnO x particles exhibit superior electrochemical performances with a specific areal capacitance of 1518 mF cm -2 at a current density of 3 mA cm -2 . An asymmetric supercapacitor that is fabricated using MnO x @C as cathode and activated carbon as anode demonstrates remarkable areal power density of 12.2 W cm -2 , areal energy density of 169.4 mWh cm -2 and excellent rate capability. This work provides a facile and effective strategy to construct MnO x @C supercapacitive materials so as to efficiently enhance electron transport at the meantime achieve rapid ion diffusion.