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Development of electroconductive polyacrylonitrile fibers through chemical metallization and galvanisation

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Abstract
Novel treatments for the reduction of dyebath induced hygral expansion are described. Their application in Neolan P dyebaths offers the potential for reduced dimensional instability with a limited impact on the final fabric colour.
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Citation

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MLA
Akbarov, Djamal, Bahkhodir Baymuratov, Philippe Westbroek, et al. “Development of Electroconductive Polyacrylonitrile Fibers Through Chemical Metallization and Galvanisation.” JOURNAL OF APPLIED ELECTROCHEMISTRY 36.4 (2006): 411–418. Print.
APA
Akbarov, D., Baymuratov, B., Westbroek, P., Akbarov, R., De Clerck, K., & Kiekens, P. (2006). Development of electroconductive polyacrylonitrile fibers through chemical metallization and galvanisation. JOURNAL OF APPLIED ELECTROCHEMISTRY, 36(4), 411–418.
Chicago author-date
Akbarov, Djamal, Bahkhodir Baymuratov, Philippe Westbroek, Rustam Akbarov, Karen De Clerck, and Paul Kiekens. 2006. “Development of Electroconductive Polyacrylonitrile Fibers Through Chemical Metallization and Galvanisation.” Journal of Applied Electrochemistry 36 (4): 411–418.
Chicago author-date (all authors)
Akbarov, Djamal, Bahkhodir Baymuratov, Philippe Westbroek, Rustam Akbarov, Karen De Clerck, and Paul Kiekens. 2006. “Development of Electroconductive Polyacrylonitrile Fibers Through Chemical Metallization and Galvanisation.” Journal of Applied Electrochemistry 36 (4): 411–418.
Vancouver
1.
Akbarov D, Baymuratov B, Westbroek P, Akbarov R, De Clerck K, Kiekens P. Development of electroconductive polyacrylonitrile fibers through chemical metallization and galvanisation. JOURNAL OF APPLIED ELECTROCHEMISTRY. Springer; 2006;36(4):411–8.
IEEE
[1]
D. Akbarov, B. Baymuratov, P. Westbroek, R. Akbarov, K. De Clerck, and P. Kiekens, “Development of electroconductive polyacrylonitrile fibers through chemical metallization and galvanisation,” JOURNAL OF APPLIED ELECTROCHEMISTRY, vol. 36, no. 4, pp. 411–418, 2006.
@article{332342,
  abstract     = {Novel treatments for the reduction of dyebath induced hygral expansion are described. Their application in Neolan P dyebaths offers the potential for reduced dimensional instability with a limited impact on the final fabric colour.},
  author       = {Akbarov, Djamal and Baymuratov, Bahkhodir and Westbroek, Philippe and Akbarov, Rustam and De Clerck, Karen and Kiekens, Paul},
  issn         = {0021-891X},
  journal      = {JOURNAL OF APPLIED ELECTROCHEMISTRY},
  keywords     = {WOOL},
  language     = {eng},
  number       = {4},
  pages        = {411--418},
  publisher    = {Springer},
  title        = {Development of electroconductive polyacrylonitrile fibers through chemical metallization and galvanisation},
  url          = {http://dx.doi.org/10.1007/s10800-005-9085-8},
  volume       = {36},
  year         = {2006},
}

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