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Characteristics of photoresist-derived carbon nanofibers for Li-ion full cell electrode

Authors
Kim, H.-J.Joo, Y.-H.Lee, S.-M.Kim, C.-I.
Issue Date
1-Oct-2014
Publisher
Korean Institute of Electrical and Electronic Material Engineers
Keywords
CNF; Li-ion cell; Pyrolysis; SU-8
Citation
Transactions on Electrical and Electronic Materials, v.15, no.5, pp 265 - 269
Pages
5
Journal Title
Transactions on Electrical and Electronic Materials
Volume
15
Number
5
Start Page
265
End Page
269
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/13861
DOI
10.4313/TEEM.2014.15.5.265
ISSN
1229-7607
2092-7592
Abstract
Carbon nanofiber electrode has been fabricated for energy storage systems by the electrospinning of SU-8 precursor and subsequent pyrolysis. Various parameters including the applied voltage, the distance between syringe tip and target collector and the flow rate of the polymer affect the diameter of SU-8 electrospun nanofibers. Shrinkage during pyrolysis decreases the fiber diameter. As the pyrolysis temperature increases, the resistivity decreases dramatically. Low resistivity is one of the important characteristics of the electrodes of an energy storage device. Given the advantages of carbon nanofibers having high external surface area, electrical conductivity, and lithium intercalation ability, SU-8 derived carbon nanofibers were applied to the anode of a full lithium ion cell. In this paper, we studied the physical properties of carbon fiber electrode by scanning transmission microscopy, thermal gravimetric analysis, and four-point probe. The electrochemical characteristics of the electrode were investigated by cyclic voltammogram and electrochemical impedance spectroscopy plots. ©2014 KIEEME. All rights reserved.
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Kim, Chang Il
창의ICT공과대학 (전자전기공학부)
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