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Articles

Potential dependence of electrochemical impedance of nanoscale modified carbon fibre surface

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Pages 358-365 | Published online: 19 Jul 2013

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S Yogesha, K R Udupa & A C Hegde. (2012) Surface modification by multilayered Zn–Co alloy coatings. Surface Engineering 28:1, pages 49-56.
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Keziban Huner & A Sezai Sarac. (2021) Surface electrocoating of single carbon fibre with electroactive 3,4-ethylenedioxythiophene/1‐p(tolylsulphonyl) pyrrole copolymer: effect of dielectric constant of solvent. Bulletin of Materials Science 44:4.
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Zhihui Hu, Jianmei Xu, Jin Dong, Wenhao Li, Can Huang, Wei Zhou, Ling Zhao & Qing Wang. (2020) Modified carbon fiber electrodes with enhanced impedance performance for marine sensor. Journal of the Taiwan Institute of Chemical Engineers 109, pages 137-144.
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A. Sezai Sarac & Aslı Gencturk. 2016. Low-Dimensional and Nanostructured Materials and Devices. Low-Dimensional and Nanostructured Materials and Devices 461 476 .
Curelaru Alina-Cornelia, Macovei Stefan-Cristian, Aradoaei Sebastian & Coman Adrian-Viorel. (2014) Realization of polymeric coatings in special electrochemical conditions based on electroactive polymer networks for supercapacitor purposes. Realization of polymeric coatings in special electrochemical conditions based on electroactive polymer networks for supercapacitor purposes.
Metehan C. Turhan, A. Sezai Sarac, Asli Gencturk, Hans-Detlev Gilsing, Heike Faltz & Burkhard Schulz. (2012) Electrochemical impedance characterization and potential dependence of poly[3,4-(2,2-dibutylpropylenedioxy)thiophene] nanostructures on single carbon fiber microelectrode. Synthetic Metals 162:5-6, pages 511-515.
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György InzeltGyörgy Inzelt. 2012. Conducting Polymers. Conducting Polymers 83 147 .
A.Sezai Sarac. (2011) Poly(3,4-alkylenedioxythiophene) Nanostructures. MRS Proceedings 1240.
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