3D Macro-Micro-Mesoporous FeCbegin{document}$_{2}$end{document}Obegin{document}$_{4}$end{document}/Graphene Hydrogel Electrode for High-Performance 2.5 V Aqueous Asymmetric Supercapacitors |
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Authors: | Wei-shuai Liu Yu-qing Song Heng Wang Hong-fei Wang Li-feng Yan |
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Affiliation: | Department of Chemical Physics, iCHEM, University of Science and Technology of China, Hefei 230026, China |
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Abstract: | Distinguished from commonly used Febegin{document}$_2$end{document}Obegin{document}$_3$end{document} and Febegin{document}$_3$end{document}Obegin{document}$_4$end{document}, a three-dimensional multilevel macro-micro-mesoporous structure of FeCbegin{document}$_2$end{document}Obegin{document}$_4$end{document}/graphene composite has been prepared as binder-free electrode for supercapacitors. The as-prepared materials are composed of macroporous graphene and microporous/mesoporous ferrous oxalate. Generally, the decomposition voltage of water is 1.23 V and the practical voltage window limit is about 2 V for asymmetric supercapacitors in aqueous electrolytes. When FeCbegin{document}$_2$end{document}Obegin{document}$_4$end{document}/rGO hydrogel was used as the negative electrode and a pure rGO hydrogel was used as the positive electrode, the asymmetrical supercapacitor voltage window raised to 1.7 V in KOH (1.0 mol/L) electrolyte and reached up to 2.5 V in a neutral aqueous Nabegin{document}$_2$end{document}SObegin{document}$_4$end{document} (1.0 mol/L) electrolyte. Correspondingly it also exhibits a high performance with an energy density of 59.7 Wh/kg. By means of combining a metal oxide that owns micro-mesoporous structure with graphene, this work provides a new opportunity for preparing high-voltage aqueous asymmetric supercapacitors without addition of conductive agent and binder. |
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Keywords: | Asymmetric supercapacitors High-voltage supercapacitors 3D Macro-micro-mesoporous FeC M23" >begin{document}$_2$end{document}O M24" >begin{document}$_4$end{document}/rGO hydrogel |
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