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Original Articles

Electrochemical Deposition of Composites Using Deoxycholic Acid Dispersant

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Pages 67-73 | Received 25 Mar 2015, Accepted 27 May 2015, Published online: 29 Sep 2015

REFERENCES

  • Shao, L.; Du, L.; Wang, L. Enhancing the adhesion strength between Cu substrate and Ni layer in microelectroforming. Materials and Manufacturing Processes 2014, 29 (7), 795–800.
  • Zhu, Z.; Li, X.; Zhu, D. Mechanical electrodeposition of Ni-Mn alloy. Materials and Manufacturing Processes 2013, 28 (12), 1301–1304.
  • Liu, B.; Liu, L.; Liu, X. Effects of carbon nanotubes on hardness and internal stress in Ni-P coatings. Surface Engineering 2013, 29 (7), 507–510.
  • Qu, N.S.; Qian, W.H.; Hu, X.Y.; Zhu, Z.W. Preparation of a microprism Ni-Ceo2 nanocomposite mold by electroforming. Materials and Manufacturing Processes 2014, 29 (1), 37–41.
  • Termehyousefi, A.; Bagheri, S.; Kadri, N.A.; Elfghi, F.M.; Rusop, M.; Ikeda, S. Synthesis of Well-crystalline lattice carbon nanotubes via neutralized cooling method. Materials and Manufacturing Processes 2015, 30 (1), 59–62.
  • Saghafi, M.; Mahboubi, F.; Mohajerzadeh, S.; Holze, R. Preparation of Co-Ni oxide/vertically aligned carbon nanotube and their electrochemical performance in supercapacitors. Materials and Manufacturing Processes 2015, 30 (1), 70–78.
  • Fu, L.; Yong, J.; Lai, G.; Tamanna, T.; Notley, S.; Yu, A. Nanocomposite coating of multilayered carbon nanotube-titania. Materials and Manufacturing Processes 2014, 29 (9), 1030–1036.
  • Schneider, M.; Weiser, M.; Schrtke, C.; Meiner, F.; Endler, I.; Michaelis, A. Pulse plating of manganese oxide nanoparticles on aligned MWCNT. Surface Engineering 2015, 31 (3), 214–220.
  • Edward Anand, E.; Natarajan, S. Preparation and characterisation of nanocrystalline cobalt-phosphorus coatings reinforced with carbon nanotubes. Surface Engineering 2014, 30 (10), 716–721.
  • Maharaja, J.; Raja, M.; Mohan, S. Pulse electrodeposition of Cr-SWCNT composite from choline chloride based electrolyte. Surface Engineering 2014, 30 (10), 722–727.
  • Ata, M.S.; Zhitomirsky, I. Preparation of MnO2 and composites for ultracapacitors. Materials and Manufacturing Processes 2013, 28 (9), 1014–1018.
  • Boccaccini, A.R.; Cho, J.; Subhani, T.; Kaya, C.; Kaya, F. Electrophoretic deposition of carbon nanotube-ceramic nanocomposites. Journal of the European Ceramic Society 2010, 30 (5), 1115–1129.
  • Wenseleers, W.; Vlasov, I.I.; Goovaerts, E.; Obraztsova, E.D.; Lobach, A.S.; Bouwen, A. Efficient isolation and solubilization of pristine single-walled nanotubes in bile salt micelles. Advanced Functional Materials 2004, 14 (11), 1105–1112.
  • Wang, Z.; Wu, T.; Zhou, W.; Wei, X.; Zhao, J. Surface properties and micellar molecular interaction in binary systems of a biosurfactant sodium deoxycholate (NaDC) with conventional surfactants. Journal of Surfactants and Detergents 2011, 14 (3), 391–400.
  • Bogdanova, L.R.; Gnezdilov, O.I.; Idiyatullin, B.Z.; Kurbanov, R.K.; Zuev, Y.F.; Us'yarov, O.G. Micellization in sodium deoxycholate solutions. Colloid Journal 2012, 74 (1), 1–6.
  • Das, S.; Dey, J.; Mukhim, T.; Ismail, K. Effect of sodium salicylate, sodium oxalate, and sodium chloride on the micellization and adsorption of sodium deoxycholate in aqueous solutions. Journal of Colloid and Interface Science 2011, 357 (2), 434–439.
  • Lin, S.; Blankschtein, D. Role of the bile salt surfactant sodium cholate in enhancing the aqueous dispersion stability of single-walled carbon nanotubes: a molecular dynamics simulation study. The Journal of Physical Chemistry B 2010, 114 (47), 15616–15625.
  • Si, R.; Wang, H.; Wei, L.; Chen, Y.; Wang, Z.; Wei, J. Length-dependent performances of sodium deoxycholate-dispersed single-walled carbon nanotube thin-film transistors. Journal of Materials Research 2013, 28 (7), 1004–1011.
  • Hobbie, E.K.; Fagan, J.A.; Becker, M.L.; Hudson, S.D.; Fakhri, N.; Pasquali, M. Self-assembly of ordered nanowires in biological suspensions of single-wall carbon nanotubes. ACS Nano 2008, 3 (1), 189–196.
  • Jover, A.; Meijide, F.; Rodriguez Nunez, E.; Tato, J.V. Dynamic rheology of sodium deoxycholate gels. Langmuir 2002, 18 (4), 987–991.
  • Sun, X.; Xin, X.; Tang, N.; Guo, L.; Wang, L.; Xu, G. Manipulation of the gel behavior of biological surfactant sodium deoxycholate by amino acids. The Journal of Physical Chemistry B 2014, 118 (3), 824–832.
  • Froner, E.; D'Amato, E.; Adamo, R.; Prtljaga, N.; Larcheri, S.; Pavesi, L.; Rigo, A.; Potrich, C.; Scarpa, M. Deoxycholate as an efficient coating agent for hydrophilic silicon nanocrystals. Journal of Colloid and Interface Science 2011, 358 (1), 86–92.
  • Cheong, M.; Zhitomirsky, I. Electrophoretic deposition of manganese oxide films. Surface Engineering 2009, 25 (5), 346–352.
  • Zhu, Y.; Shi, K.; Zhitomirsky, I. Polypyrrole coated carbon nanotubes for supercapacitor devices with enhanced electrochemical performance. Journal of Power Sources 2014, 268, 233–239.
  • Jover, A.; Meijide, F.; Rodriguez Nunez, E.; Vazquez Tato, J. Aggregation kinetics of sodium deoxycholate in aqueous solution. Langmuir 1998, 14 (16), 4359–4363.
  • Culita, D.C.; Patron, L.; Teodorescu, V.S.; Balint, I. Synthesis and characterization of spinelic ferrites obtained from coordination compounds as precursors. Journal of Alloys and Compounds 2007, 432 (1), 211–216.
  • Yang, L.; Xu, Y.; Su, Y.; Wu, J.; Zhao, K.; Chen, J.e.; Wang, M. FT-IR spectroscopic study on the variations of molecular structures of some carboxyl acids induced by free electron laser. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 2005, 62 (4), 1209–1215.
  • Shi, K.; Zhitomirsky, I. Electrophoretic nanotechnology of graphene-carbon nanotube and graphene-polypyrrole nanofiber composites for electrochemical supercapacitors. Journal of Colloid and Interface Science 2013, 407 (1), 474–481.
  • Kosmulski, M. The pH-dependent surface charging and the points of zero charge. Journal of Colloid and Interface Science 2002, 253 (1), 77–87.

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