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Fabrication of an ingenious metallic asymmetric supercapacitor by the integration of anodic iron oxide and cathodic nickel phosphide

Authors :
Uk Sim
Woosung Park
Hyun Soo Han
Ha Yeun Lee
Subramani Surendran
Tae-Yong An
Hyunkyu Kim
Yujin Chae
Jung Kyu Kim
Source :
Applied Surface Science. 511:145424
Publication Year :
2020
Publisher :
Elsevier BV, 2020.

Abstract

Energy storage systems play a vital role in rationalizing the imminent energy crisis and ecological discomfort. The modern tactic of resolving the lack of energy density dispute with flexible hybrid supercapacitors that could generate high power and energy density under different conditions in energy systems. Here, we introduce a simple solvothermal approach at low temperatures to prepare iron oxide and nickel phosphide nanoparticles. The formation of single-phase pure Fe3O4 and Ni2P with high crystallinity was identified through XRD analysis. The morphology of both the Fe3O4 and Ni2P was confirmed as uniformly distributed nanoparticles with an improved active surface area. The electrochemical activity of the prepared Fe3O4 and Ni2P electrodes revealed improved storage capacity (106 & 354 C g−1) and high retention capability (90%) at higher current densities with resilient cyclic stability (8000 cycles). Finally, a flexible asymmetric supercapacitor was fabricated and demonstrated superiorly high cyclic stability (20,000 cycles) with an improved energy density (31 Wh kg−1) and power density (6400 W kg−1). Therefore, the designed metallic Fe3O4 || Ni2P asymmetric system is anticipated to be a promising strategy toward the advancement of future energy systems.

Details

ISSN :
01694332
Volume :
511
Database :
OpenAIRE
Journal :
Applied Surface Science
Accession number :
edsair.doi...........534de28ec2b377c3c9dc6459b94579be
Full Text :
https://doi.org/10.1016/j.apsusc.2020.145424