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MICROSTRUCTURES AND ELECTROCHEMICAL PROPERTIES OF RAPIDLY-SOLIDIFIED Si-Mn ALLOY

Authors
Han, Hyun WookAhn, Deuk KyuAhn, Hyo-JunPark, Won-WookSohn, Keun Yong
Issue Date
Jun-2011
Publisher
INST PROBLEMS MECHANICAL ENGINEERING-RUSSIAN ACAD SCIENCES
Citation
REVIEWS ON ADVANCED MATERIALS SCIENCE, v.28, no.1, pp 74 - 78
Pages
5
Indexed
SCIE
SCOPUS
Journal Title
REVIEWS ON ADVANCED MATERIALS SCIENCE
Volume
28
Number
1
Start Page
74
End Page
78
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/23714
ISSN
1606-5131
Abstract
The microstructure and electrochemical properties of a Si(70)Mn(30) alloy prepared by melt spinning and arc melting have been investigated. Melt-spun ribbons and arc-melted ingots were fragmented and mixed with acetylene black (AB), polyvinylidene fluoride (PVDF), and N-methylpyrrolidinone by planetary milling for 2 h to characterize their electrochemical properties. The results showed that the microstructures of the melt-spun ribbons represented a fine eutectic constituent composed of a silicon phase with a thickness of approximately 50 similar to 70 nm and a Mn(4)Si(7) compound. The cyclic behavior of the rapidly solidified melt-spun Si(70)Mn(30) ribbons improved remarkably over that of the arc-melted specimens because of a finer microstructural scale; as the thickness of silicon crystal decreased 40 fold, the initial irreversible capacity was reduced by more than 2.5 times. The improved cycle performance of the melt-spun ribbons is a consequence of the small diffusion distance for the lithium-ion exchange.
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Ahn, Hyo Jun
대학원 (나노신소재융합공학과)
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