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Cited 2 time in webofscience Cited 3 time in scopus
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Cu@Fe-Redox Capacitive-Based Metal-Organic Framework Film for a High-Performance Supercapacitor Electrodeopen access

Authors
Patil, Supriya A.Katkar, Pranav K.Kaseem, MosabNazir, GhazanfarLee, Sang-WhaPatil, HarshadaKim, HonggyunMagotra, Verjesh KumarThi, Hoa BuiIm, HyunsikShrestha, Nabeen K.
Issue Date
May-2023
Publisher
MDPI
Keywords
Cu-doped Fe-MOF; drop-cast film; bimetallic redox capacitive; supercapacitor
Citation
NANOMATERIALS, v.13, no.10
Journal Title
NANOMATERIALS
Volume
13
Number
10
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/88317
DOI
10.3390/nano13101587
ISSN
2079-4991
2079-4991
Abstract
A metal-organic framework (MOF) is a highly porous material with abundant redox capacitive sites for intercalation/de-intercalation of charges and, hence, is considered promising for electrode materials in supercapacitors. In addition, dopants can introduce defects and alter the electronic structure of the MOF, which can affect its surface reactivity and electrochemical properties. Herein, we report a copper-doped iron-based MOF (Cu@Fe-MOF/NF) thin film obtained via a simple drop-cast route on a 3D-nickel foam (NF) substrate for the supercapacitor application. The as-deposited Cu@Fe-MOF/NF electrodes exhibit a unique micro-sized bipyramidal structure composited with nanoparticles, revealing a high specific capacitance of 420.54 F g(-1) at 3 A g(-1) which is twice compared to the nano-cuboidal Fe-MOF/NF (210 F g(-1)). Furthermore, the asymmetric solid-state (ASSSC) supercapacitor device, derived from the assembly of Cu@Fe-MOF/NF?rGO/NF electrodes, demonstrates superior performance in terms of energy density (44.20 Wh.kg(-1)) and electrochemical charge-discharge cycling durability with 88% capacitance retention after 5000 cycles. This work, thus, demonstrates a high potentiality of the Cu@Fe-MOF/NF film electrodes in electrochemical energy-storing devices.
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Katkar, Pranav Kalidas
Engineering (화공생명배터리공학부)
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