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- W3105095033 abstract "With a view to fabricate smart technology devices with portable features and with global energy security, researchers aimed to design high-performance electrode material to respond to the increasing demand for renewable energy storage systems. Nano Zn 3 V 2 O 8 material was successfully synthesized via simple and low-cost chemical method. The structure and chemical conformation of the as-synthesized Zn 3 V 2 O 8 were ascertained by physico-chemical techniques, respectively. BET results showed the mesoporous structure with specific surface area of 16 m 2 g −1 . Furthermore, its electrochemical performance was investigated in a three-electrode system. The as-synthesized Zn 3 V 2 O 8 nanostructure exhibited high specific capacitance (Csp) of 471 F g -1 at 1 Acm −2 and cycling stability with 97% capacitance retention after 3000 cycles. The excellent performance of Zn 3 V 2 O 8 nanostructure was related to its high conductivity and the fast electron/ions transportation. The unique features of Zn 3 V 2 O 8 rendered it as superior electrode for energy storage systems. • Zn 3 V 2 O 8 was prepared by simple chemical method. • The synthesized material exhibited nanospherical like shape. • The synthesized material was investigated as electrodes for supercapacitors. • The charge storage behavior was observed to be Faradaic capacitive nature. • The capacitance value of Zn 3 V 2 O 8 was found to be 471 F g -1 at 1 Acm −2 ." @default.
- W3105095033 created "2020-11-23" @default.
- W3105095033 creator A5011489973 @default.
- W3105095033 creator A5040016991 @default.
- W3105095033 date "2021-04-01" @default.
- W3105095033 modified "2023-10-10" @default.
- W3105095033 title "Facile synthesis of Zn3V2O8 nanostructured material and its enhanced supercapacitive performance" @default.
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- W3105095033 doi "https://doi.org/10.1016/j.jallcom.2020.157939" @default.
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