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Title: Enhanced capacitive performance of nickel oxide on porous La₀·₇Sr₀·₃CoO₃-δ ceramic substrate for electrochemical capacitors
Authors: Liu, P 
Liu, Z
Wu, P
Ou, X
Zhang, Y
Cai, W 
Yu, F
Ni, M 
Cheng, S
Liu, M
Liu, J
Issue Date: 18-Oct-2018
Source: International journal of hydrogen energy, 18 Oct. 2018, v. 43, no. 42, p. 19589-19599
Abstract: Nickel oxide (NiO) nanoparticles loaded on porous strontium-substituted lanthanum cobaltite (La0·7Sr0·3CoO3-δ, LSC) ceramic substrate is fabricated as a novel binder-free electrode (NiO/LSC) for electrochemical capacitors. The LSC substrate is synthesized through a simple solid-state method. NiO nanoparticles are loaded onto the porous LSC substrate by infiltrating a nickel nitrate (Ni(NO3)2) solution into the pores, followed by calcination. The composite electrode NiO/LSC with a high mass loading of NiO (∼10 mg cm−2) exhibits an appreciable areal capacitance of 10.6 F cm−2, a specific capacitance of 1064.1 F g−1 and remarkable cycling stability (80.1% retention after 3000 cycles at 20 mA cm−2). Moreover, an asymmetric electrochemical capacitor, with NiO/LSC as the positive electrode and carbon cloth as the negative electrode, confirms the excellent capacitive properties, with high energy density of 9.27 mWh cm−3 under a wide potential of 1.65 V. This work indicates the promising application of NiO/LSC as an advanced electrode for electrochemical capacitors.
Keywords: Electrochemical capacitors
Electrode
NiO
La0.7Sr 0.3CoO3-δ substrate
Publisher: Elsevier Ltd
Journal: International journal of hydrogen energy 
ISSN: 0360-3199
EISSN: 1879-3487
DOI: 10.1016/j.ijhydene.2018.09.023
Rights: © 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
© 2018. This manuscript version is made available under the CC-BY-NC-ND 4.0 license https://creativecommons.org/licenses/by-nc-nd/4.0/
The following publication Liu, P., Liu, Z., Wu, P., Ou, X., Zhang, Y., Cai, W., ... & Liu, J. (2018). Enhanced capacitive performance of nickel oxide on porous La0· 7Sr0· 3CoO3-δ ceramic substrate for electrochemical capacitors. International Journal of Hydrogen Energy, 43(42), 19589-19599 is available at https://doi.org/10.1016/j.ijhydene.2018.09.023.
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