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In this section, you can access to the latest technical information related to the FUTURE project topic.
A simple hydrothermal method for the preparation of 3D petal-like Ni(OH)2/g-C3N4/RGO composite with good supercapacitor performance
High performance electrode materials have always been the key of supercapacitor research. Herein, we have prepared a kind of Ni(OH)2/g-C3N4/RGO nanosheet composite with petal-like structure, which was prepared by a simple hydrothermal method. The growth of Ni(OH)2 based on g-C3N4/RGO nanosheets owning to a more loose structure between the layers, which provided a sufficient electron transfer region for the Ni3+/Ni2+ in the redox process. In addition, the specific capacitance of Ni(OH)2/g-C3N4/RGO electrode was 543.8?F/g at 1?A/g, and also shown good cycling stability (72.7% retention over 2000 cycles). We assembled an asymmetric supercapacitor with Ni(OH)2/g-C3N4/RGO and activated carbon electrodes. The maximum energy and power density of the device were 33.38?Wh/kg and 849.8?W/kg respectively. The cyclic stability was 71.72% after 6000 cycles. Furthermore, the Ni(OH)2/g-C3N4/RGO nanosheet composite prepared provided a theoretical basis in the field of energy application research.
» Author: He Liu, Bin Liu, Xuejiao Sun, Xiaoxing Han, Jinlong Cui, Yongqiang Zhang, Wenxiu He
C/ Gustave Eiffel, 4
(València Parc Tecnològic) - 46980
PATERNA (Valencia) - SPAIN
(+34) 96 136 60 40
Project Management department - Sustainability and Industrial Recovery
life-future-project@aimplas.es