JOURNAL ARTICLE

Electrochemical Performance of α-Fe2O3Particles as Anode Material for Aqueous Rechargeable Batteries

Ge HuoXuegang LuYan HuangWenyu LiGongying Liang

Year: 2014 Journal:   Journal of The Electrochemical Society Vol: 161 (6)Pages: A1144-A1148   Publisher: Institute of Physics

Abstract

This paper presents a nontoxic, environmentally and friendly anode material for aqueous rechargeable battery. Two kinds of anode materials, α-Fe2O3 nano-needle and nano-platelet particles for aqueous rechargeable battery, are synthesized via a facile hydrothermal method. The crystal structure of Fe2O3 particles is characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM) and transmission electron microscopy (TEM). Moreover, the obtained α-Fe2O3 particles are used as the anode materials of Ni-MH batteries, and their electrochemical performance is investigated. Compared with nano-platelet particles, nano-needle α-Fe2O3 particles show a higher specific capacity of 468 mAh g−1 and a shorter activation time. This can be ascribed to the small particle size and large specific surface of nano-needle α-Fe2O3 particles. Both of these two samples possess stable and high capacity of about 140∼150 mAh g−1. Furthermore, the reaction corresponding to the stable capacity, 3Fe(OH)2 + 2OH− → Fe3O4 + 4H2O + 2e−, is found in the discharge process. It is believed that the reduction of discharge capacity is mainly due to the fact that the reaction of Fe(OH)2 to FeOOH is repressed.

Keywords:
Anode Scanning electron microscope Electrochemistry Aqueous solution Transmission electron microscopy Chemical engineering Materials science Battery (electricity) Nanoparticle Particle (ecology) Hydrothermal circulation Nano- Particle size Nanotechnology Chemistry Electrode Composite material Organic chemistry Physical chemistry

Metrics

28
Cited By
2.96
FWCI (Field Weighted Citation Impact)
18
Refs
0.93
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Advanced battery technologies research
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Iron oxide chemistry and applications
Physical Sciences →  Energy →  Renewable Energy, Sustainability and the Environment
Electrocatalysts for Energy Conversion
Physical Sciences →  Energy →  Renewable Energy, Sustainability and the Environment

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