ISSN: 1003-6326
CN: 43-1239/TG
CODEN: TNMCEW

Vol. 19    No. 1    February 2009

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Synthesis and behavior of Al-stabilized α-Ni(OH)2
WANG Hong(王 虹), TANG Zhi-yuan(唐致远), LIU Yuan-gang(刘元刚), LEE Chang-sheng(李昌盛)
(Department of Applied Chemistry, School of Chemical Engineering and Technology, Tianjin University,
Tianjin 300072, China
)
Abstract: Nano-fibrous Al-stabilized α-Ni(OH)2 was synthesized by the urea thermal decomposition method. The grain morphology, crystal structure, thermal stability, chemical composition and electrochemical performance of the Al-stabilized α-Ni(OH)2 were investigated. It is found that the urea thermal decomposition is an appropriate way to precipitate the Al-stabilized α-Ni(OH)2 with excellent performance. The fiber cluster TEM pattern shows that the synthesized α-Ni(OH)2 powder is composed of agglomerates of much smaller primary particles. The stabilized α-Ni(OH)2 powder with a 7.67 Å c-axis distance and low thermal stabilities is obtained. The FTIR spectrum shows that the materials contain absorbed water molecules, and intercalated CO32− and SO42− anions. The experimental α-Ni(OH)2 electrode exhibits excellent electrochemical redox reversibility, high special capacity, good rate discharging performance and perfect cyclic stability. Moreover, the synthesized α-Ni(OH)2 electrode also shows high discharge capacity and cyclic stability at high temperature. The electrode specific capacity remains 290 mA∙h/g at 60 ℃, which is only 15 mA∙h/g lower than its ambient value, and the capacity loss is 0.9 mA∙h/g per charge-discharge cycle.
Key words: urea thermal decomposition; Al-stabilized α-Ni(OH)2; electrochemical performance
Superintended by The China Association for Science and Technology (CAST)
Sponsored by The Nonferrous Metals Society of China (NFSOC)
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