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  4. Preparation and electrochemical characteristics of spherical spinel cathode powders via an ultrasonic spray pyrolysis process
 
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Preparation and electrochemical characteristics of spherical spinel cathode powders via an ultrasonic spray pyrolysis process

Resource
Materials Chemistry and Physics 112 (1): 115-119
Journal
Materials Chemistry and Physics
Journal Volume
112
Journal Issue
1
Pages
115-119
Date Issued
2008
Date
2008
Author(s)
Lu, Chung-Hsin  
Wu, Tai-Yuan
Wu, Hung-Chun
Yang, Mo-Hua
Guo, Zheng-Zhao
Taniguchi, Izumi
DOI
10.1016/j.matchemphys.2008.05.033
URI
http://ntur.lib.ntu.edu.tw//handle/246246/92126
Abstract
Li1.03Co0.15Mn1.82O4 powders as cathode materials used in lithium-ion battery were synthesized using an ultrasonic spray pyrolysis process. The prepared powders were heated at 750°C for different heating durations. As the heating time increased, the crystallinity of the powders significantly enhanced. The nanometered primary particles were aggregated into sphere-like secondary particles with a porous structure. The surface area of the heated samples decreased with an increase in the heating time. After the characteristics of electrochemical performance, the powders heated for 4 h exhibited improved properties. When the discharge rate was 60 C, this sample revealed high capacity retention which was 87% with the reference of 0.1 C. According to the results of high C-rate tests, the electrochemical characteristic of the prepared Li1.03Co 0.15Mn1.82 O4 powders were found to depend on not only the crystallinity but also the surface area. For preparing cathode materials with good rate capability, the crystallinity and surface area of the materials need to be well controlled. © 2008 Elsevier B.V. All rights reserved.
Subjects
Cathode materials; Lithium ion battery; Porosity; Spinel structure; Spray pyrolysis
SDGs

[SDGs]SDG7

Other Subjects
Cathodes; Electric discharges; Electrodes; Lithium; Lithium alloys; Lithium-ion batteries; Manganese; Porosity; Powders; Pyrolysis; Cath-ode materials; Electrochemical characteristics; Electrochemical performance; Primary particles; Rate capabilities; Secondary particles; Spinel structure; Ultrasonic spray pyrolysis; Spray pyrolysis
Type
journal article
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