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Cited 10 time in webofscience Cited 8 time in scopus
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Ni sulfide/Ti50Ni50 electrode with the superelasticity

Authors
Bae, K. W.Kim, H. S.Cho, G. B.Kim, K. W.Cho, K. K.Lee, J. H.Nam, T. H.
Issue Date
1-Apr-2009
Publisher
ELSEVIER SCIENCE BV
Keywords
Flexible battery; Ni sulfides; Ti50Ni50 alloy; Superelasticity; Electrochemical properties
Citation
JOURNAL OF POWER SOURCES, v.189, no.1, pp 378 - 384
Pages
7
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF POWER SOURCES
Volume
189
Number
1
Start Page
378
End Page
384
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/26327
DOI
10.1016/j.jpowsour.2008.08.012
ISSN
0378-7753
1873-2755
Abstract
Ni sulfides layers were formed on the surface of a Ti50Ni50 alloy by reacting sulfur with a Ni film deposited on the alloy, and then microstructures, transformation behavior, shape memory characteristics, superelasticity and electrochemical properties were investigated. When a Ni film deposited on a Ti50Ni50 alloy was annealed under the sulfur pressure of 100 kPa at 623 K, sulfides layers consisted of NiS and NiS2 were formed. When annealing was made at 648 K with annealing time less than 0.9 ks, sulfides layers with a mixture of NiS and NiS2 were formed. while only NiS2 was formed when it was made for 1.8 ks. When annealing was made at 673 K with annealing time longer than 0.9 ks, only NiS2 was formed. With raising annealing temperature and prolong annealing time, NiS changed into NiS2 accompanied with a morphological change from a particulate-like to a dense film-like. A Ti50Ni50 alloy with surface NiS2 layer showed the two-stage B2-R-B19' transformation behavior, the shape memory effect and a partial superelasticity with a superelastic recovery ratio of 78%. NiS2 cathode showed a clear discharge behavior with multi-voltage plateaus induced by intermediate reaction products; NiS and Ni3S2. The initial discharge capacity was 743 mA h g(-1) corresponding to 85% of theoretical capacity and 65% of capacity duration is obtained at 20th discharge. (C) 2008 Elsevier B.V. All rights reserved.
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대학원 (나노신소재융합공학과)
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