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Electrochemical actuation in chitosan/polyaniline microfibers for artificial muscles fabricated using an in situ polymerization

Authors
Ismail, Yahya A.Shin, Su RyonShin, Kwang MinYoon, Seong GilShon, KiwonKim, Sun I.Kim, Seon Jeong
Issue Date
Feb-2008
Publisher
ELSEVIER SCIENCE SA
Keywords
electrochemical actuation; chitosan; polyaniline; artificial muscle
Citation
SENSORS AND ACTUATORS B-CHEMICAL, v.129, no.2, pp.834 - 840
Indexed
SCIE
SCOPUS
Journal Title
SENSORS AND ACTUATORS B-CHEMICAL
Volume
129
Number
2
Start Page
834
End Page
840
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/179039
DOI
10.1016/j.snb.2007.09.083
ISSN
0925-4005
Abstract
We have fabricated a new type of electroactuating biopolymer hydrogel/polyaniline microfiber by wet spinning a chitosan solution, followed by the in situ chemical polymerization of aniline. This novel biomaterial showed an enhanced chemical and electrochemical actuation in response to pH and an electrical stimulus. The fibers showed a reasonable electrical conductivity of 2.856 x 10(-2) S/cm at room temperature. The strain ratio and response time during electrochemical actuation were highly dependent on the pH of the electrolyte. An isotonic strain of 0.39% during electrochemical actuation in an aqueous HCl solution at pH = 0, along with a strain of 6.73% corresponding to pH actuation was realized in the microfibers. The higher strain ratio at lower pH values is probably due to a faster diffusion rate. Although the electrochemical actuation was due to the polyaniline, the actuation mechanism was different from that in pure polyaniline. EDX analysis showed the presence of polyaniline inside the fibers, which gradually decreased moving towards the center of the fiber. SEM images of the fibers showed an agglomerated granular morphology of polyaniline particles coated on the surface of the chitosan fibers. The electrochemical properties of the fibers were due to polyaniline, as evidenced by cyclic voltammogram.
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COLLEGE OF ENGINEERING (서울 바이오메디컬공학전공)
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