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Hierarchical Mn-doped Fe2O3@rGO hollow core-shell spheres for high-performance hybrid capacitor
期刊文章

Hierarchical Mn-doped Fe2O3@rGO hollow core-shell spheres for high-performance hybrid capacitor

Jijun Zhang, Yan Wang, Hsiang-Ju Liao, Tzu-Yi Yang, Zexiang Chen, Xinyu Yan, Zhiyu Zhou, Huifang lv, Wen-Wu LiuYu-Lun Chueh
Materials Today Energy, 卷.17, 100388
09/2020

摘要

Hollow sphere Hybrid capacitor Hydrothermal method Rate capability RGO Renewable Energy Sustainability and the Environment Materials Science (miscellaneous) Nuclear Energy and Engineering Fuel Technology Energy Engineering and Power Technology
Herein, we use a facile one-step hydrothermal growth process to achieve hollow spheres assembled from Mn-doped Fe 2 O 3 nanoparticles (NPs) coated by reduced graphene oxide (rGO) layers. This unique 3D nanostructure enables electrochemical reactions to occur easily and efficiently, increasing the active regions of redox reactions where remarkable electrochemical properties with specific capacity of 285 mAh g −1 (5.7 mAh cm −2 ) at 1 A g −1 (20 mA cm −2 ) with a high area loading of 20 mg cm −2 . Cycle performance of 83.4% at 1 A g −1 over 1000 cycles is achieved, confirming high stability of the Mn-doped Fe 2 O 3 @rGO hollow sphere after the redox reaction. Even under high current density of 16 A g −1 , capacity retention of 64.4% is demonstrated, representing good rate capability. Furthermore, hybrid capacitor (HC) devices consisting of the as-prepared 3D Mn-doped Fe 2 O 3 @rGO as the anode electrode and NiAl-LDH nanosheets as the cathode electrode with an superior maximum energy density of 102.0 Wh kg −1 at the power density of 1.1 kW kg −1 were demonstrated and the energy density of 56.0 Wh kg −1 remains at the power density of 10.1 kW kg −1 .

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