231
Views
2
CrossRef citations to date
0
Altmetric
Original Articles

Electrochemical deposition of polypyrrole–carbon nanotube films using steroid dispersants

, , &
Pages 1062-1066 | Received 03 Feb 2017, Accepted 03 Jul 2017, Published online: 29 Aug 2017

References

  • Sun, X.; Zhang, H.; Zhou, L.; Huang, X.; Yu, C. Polypyrrole-Coated Zinc Ferrite Hollow Spheres with Improved Cycling Stability for Lithium-Ion Batteries. Small 2016, 12(27), 3732–3737. DOI:10.1002/smll.201601143
  • Chen, S.; Zhitomirsky, I. Strategies to Optimize the Capacitive Behavior of Polypyrrole Electrodes. Mater. Manuf. Proc. 2016, 31(15), 2017–2022. DOI:10.1080/10426914.2015.1127952
  • Chen, S.; Zhitomirsky, I. Influence of Additives on Performance of Polypyrrole-Carbon Nanotube Supercapacitors. Mater. Manuf. Proc. 2016, 31(9), 1246–1252. DOI:10.1080/10426914.2015.1019131
  • Kotresh, S.; Ravikiran, Y.; Vijaya Kumari, S.; Chandrasekhar, T.; Ramana, C. V.; Thomas, S. Solution-based Spin Cast Processed Polypyrrole/Niobium Pentoxide Nanocomposite as Room Temperature Liquefied Petroleum Gas Sensor. Mater. Manuf. Proc. 2016, 31(15), 1976–1982. DOI:10.1080/10426914.2016.1151047
  • Kumar, R.; Oves, M.; Almeelbi, T.; Al-Makishah, N. H.; Barakat, M. Hybrid Chitosan/Polyaniline-Polypyrrole Biomaterial for Enhanced Adsorption and Antimicrobial Activity. J. Colloid Interf. Sci. 2017, 490, 488–496. DOI:10.1016/j.jcis.2016.11.082
  • Jiang, Y.; Hu, C.; Cheng, H.; Li, C.; Xu, T.; Zhao, Y.; Shao, H.; Qu, L.Spontaneous. Straightforward Fabrication of Partially Reduced Graphene Oxide-Polypyrrole Composite Films for Versatile Actuators. ACS Nano 2016, 10(4), 4735–4741. DOI:10.1021/acsnano.6b01233
  • Muliwa, A. M.; Leswifi, T. Y.; Onyango, M. S.; Maity, A. Magnetic Adsorption Separation (MAS) Process: An Alternative Method of Extracting Cr (VI) from Aqueous Solution using Polypyrrole Coated Fe3O4 Nanocomposites. Sep. Purif. Technol. 2016, 158, 250–258. DOI:10.1016/j.seppur.2015.12.021
  • Bhaumik, M.; Agarwal, S.; Gupta, V. K.; Maity, A. Enhanced Removal of Cr (VI) from Aqueous Solutions using Polypyrrole Wrapped Oxidized MWCNTs Nanocomposites Adsorbent. J. Colloid Interf. Sci. 2016, 470, 257–267. DOI:10.1016/j.jcis.2016.02.054
  • Singh, L. K.; Maiti, A.; Maurya, R. S.; Laha, T. Al Alloy Nanocomposite Reinforced with Physically Functionalized Carbon Nanotubes Synthesized via Spark Plasma Sintering. Mater. Manuf. Proc. 2016, 31(6), 733–738. DOI:10.1080/10426914.2015.1070419
  • Salah, N.; Al-Ghamdi, A. A.; Memic, A.; Habib, S. S.; Khan, Z.H. Formation of Carbon Nanotubes from Carbon-Rich Fly Ash: Growth Parameters and Mechanism. Mater. Manuf. Proc. 2016, 31(2), 146–156. DOI:10.1080/10426914.2015.1025975
  • Saghafi, M.; Mahboubi, F.; Mohajerzadeh, S.; Holze, R. Preparation of Co-Ni Oxide/Vertically Aligned Carbon Nanotube and their Electrochemical Performance in Supercapacitors. Mater. Manuf. Proc. 2015, 30(1), 70–78. DOI:10.1080/10426914.2014.952026
  • Le, M.-T.; Huang, S.-C. Effect of Nano-Fillers on the Strength Reinforcement of Novel Hybrid Polymer Nanocomposites. Mater. Manuf. Proc. 2016, 31(8), 1066–1072. DOI:10.1080/10426914.2015.1048365
  • Mahajan, M.; Singh, K.; Pandey, O. Structural Investigation of Catalytically Grown Carbon Nanotubes. Mater. Manuf. Proc. 2016, 31(8), 989–994. DOI:10.1080/10426914.2015.1059446
  • Termehyousefi, A.; Bagheri, S.; Kadri, N.; Elfghi, F. M.; Rusop, M.; Ikeda, S. Synthesis of Well-Crystalline Lattice Carbon Nanotubes via Neutralized Cooling Method. Mater. Manuf. Proc. 2015, 30(1), 59–62. DOI:10.1080/10426914.2014.961475
  • Osouli-Bostanabad, K.; Aghajani, H.; Hosseinzade, E.; Maleki-Ghaleh, H.; Shakeri, M. High Microwave Absorption of nano-Fe3O4 Deposited Electrophoretically on Carbon Fiber. Mater. Manuf. Proc. 2016, 31(10), 1351–1356. DOI:10.1080/10426914.2015.1090595
  • Vijayalakshmi, U.; Chellappa, M.; Anjaneyulu, U.; Manivasagam, G.; Sethu, S. Influence of Coating Parameter and Sintering Atmosphere on the Corrosion Resistance Behavior of Electrophoretically Deposited Composite Coatings. Mater. Manuf. Proc. 2016, 31(1), 95–106. DOI:10.1080/10426914.2015.1070424
  • Zhitomirsky, I.; Gal-Or, L. Formation of Hollow Fibers by Electrophoretic Deposition. Mater. Lett. 1999, 38(1), 10–17. DOI:10.1016/s0167-577x(98)00124-4
  • Li, J.; Zhitomirsky, I. Electrophoretic Deposition of Manganese Dioxide-Carbon Nanotube Composites. J. Mater. Process. Technol. 2009, 209(7), 3452–3459. DOI:10.1016/j.jmatprotec.2008.08.001
  • Boccaccini, A. R.; Cho, J.; Roether, J. A.; Thomas, B. J. C.; Jane Minay, E.; Shaffer, M.S.P. Electrophoretic Deposition of Carbon Nanotubes. Carbon 2006, 44(15), 3149–3160. DOI:10.1016/j.carbon.2006.06.021
  • Anand, E. E.; Natarajan, S. Strengthening Mechanisms in Multiwalled Carbon Nanotubes Reinforced Co-W Pulse Electrodeposited Coatings. Mater. Manuf. Proc. 2016, 31(1), 48–52. DOI:10.1080/10426914.2015.1004697
  • Casagrande, T.; Lawson, G.; Li, H.; Wei, J.; Adronov, A.; Zhitomirsky, I. Electrodeposition of Composite Materials Containing Functionalized Carbon Nanotubes. Mater. Chem. Phys. 2008, 111(1), 42–49. DOI:10.1016/j.matchemphys.2008.03.010
  • Vigolo, B.; Coulon, C.; Maugey, M.; Zakri, C.; Poulin, P. An Experimental Approach to the Percolation of Sticky Nanotubes. Science 2005, 309(5736), 920–923. DOI:10.1126/science.1112835
  • Vigolo, B.; Penicaud, A.; Coulon, C.; Sauder, C.; Pailler, R.; Journet, C.; Bernier, P.; Poulin, P. Macroscopic Fibers and Ribbons of Oriented Carbon Nanotubes. Science 2000, 290(5495), 1331–1334.
  • Shi, K.; Zhitomirsky, I. Electrodeposition of Carbon Nanotubes Triggered by Cathodic and Anodic Reactions of Dispersants. Mater. Manuf. Proc. 2015, 30(6), 771–777. DOI:10.1080/10426914.2014.994771
  • Ata, M.; Liu, Y.; Zhitomirsky, I. A Review of New Methods of Surface Chemical Modification, Dispersion and Electrophoretic Deposition of Metal Oxide Particles. RSC Adv. 2014, 4(43), 22716–22732. DOI:10.1039/c4ra02218a
  • Pang, X.; Casagrande, T.; Zhitomirsky, I. Electrophoretic deposition of Hydroxyapatite-CaSiO3-Chitosan Composite Coatings. J. Colloid Interf. Sci. 2009, 330(2), 323–329. DOI:10.1016/j.jcis.2008.10.070
  • Ata, M. S.; Zhitomirsky, I. Electrochemical Deposition of Composites Using Deoxycholic Acid Dispersant. Mater. Manuf. Proc. 2016, 31(1), 67–73. DOI:10.1080/10426914.2015.1058953
  • Su, Y.; Zhitomirsky, I. Electrophoretic Nanotechnology of Composite Electrodes for Electrochemical Supercapacitors. J. Phys. Chem. B 2013, 117(6), 1563–1570. DOI:10.1021/jp304358q
  • Su, Y.; Zhitomirsky, I. Electrophoretic Deposition of Graphene, Carbon Nanotubes and Composite Films using Methyl Violet Dye as a Dispersing Agent. Colloids Surf. A Physicochem. Eng. Asp. 2013, 436, 97–103. DOI:10.1016/j.colsurfa.2013.06.024
  • Wang, H. Dispersing Carbon Nanotubes using Surfactants. Curr. Opinion Colloid Interf. Sci. 2009, 14(5), 364–371. DOI:10.1016/j.cocis.2009.06.004
  • Zhitomirsky, I. Cathodic Electrodeposition of Ceramic and Organoceramic Materials. Fundamental Aspects. Adv. in Colloid Interf. Sci. 2002, 97(1–3), 277–315. DOI:10.1016/s0001-8686(01)00068-9
  • Garg, M.; Sharma, S.; Mehta, R. Processing of Functionalized and Pristine Carbon Nanotube Epoxy Composites with Silane-Treated Glass Fiber. Mater. Manuf. Proc. 2016, 31(15), 2044–2056. DOI:10.1080/10426914.2016.1176186
  • Peng, L.; Jiangrong, K.; Qicheng, L.; Shuguang, C.; Haibin, L. Structural Improvement of Pitch-Derived Mesocarbon Microbeads by Preprocessing Raw Material. Mater. Manuf. Proc. 2016, 29(4), 403–407. DOI:10.1080/10426914.2014.892970

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.