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Original Articles

Electrophoretic deposition of functional organic molecules and composite films

, , &
Pages 389-393 | Received 12 Dec 2015, Accepted 21 Feb 2016, Published online: 23 Nov 2016

References

  • Liang, F.; Chen, J.; Cheng, Y.; Wang, L.; Ma, D.; Jing, X.; Wang, F. Synthesis, characterization, photoluminescent and electroluminescent properties of new conjugated 2,2′-(arylenedivinylene)bis-8-substituted quinolines. Journal of Materials Chemistry 2003, 13 (6), 1392–1399.
  • Poonam, S.P.; Kumar, R.; Khatkar, A.; Taxak, V.B. Synthesis, characterization, enhanced photoluminescence and biological activity of Eu(III) complexes with organic ligands. Journal of Materials Science: Materials in Electronics 2015, 26 (9), 7086–7095.
  • Yurdakul, Å.; Yurdakul, M. Vibrational frequencies and structural determination of 2,2′-biquinoline. Journal of Molecular Structure 2007, 834–836, 555–560.
  • Baudin, H.B.; Davidsson, J.; Serroni, S.; Juris, A.; Balzani, V.; Campagna, S.; Hammarstrom, L. Ultrafast energy transfer in binuclear ruthenium-osmium complexes as models for light-harvesting antennas. The Journal of Physical Chemistry A 2002, 106 (17), 4312–4319.
  • Wills, K.A.; Mandujano-Ramirez, H.J.; Merino, G.; Mattia, D.; Hewat, T.; Robertson, N.; Oskam, G.; Jones, M.D.; Lewis, S.E.; Cameron, P.J. Investigation of a copper (i) biquinoline complex for application in dye-sensitized solar cells. RSC Advances 2013, 3 (45), 23361–23369.
  • Clark, A.C.; Wilkes, E.N.; Scollary, G.R. Chemistry of copper in white wine: a review. Australian Journal of Grape and Wine Research 2015, 21 (3), 339–350.
  • Gonzalez, P.; Knochen, M.s.; Sasaki, M.K.; Zagatto, E.A. Pulsed flows in flow analysis: potentialities, limitations and applications. Talanta 2015, 143, 419–430.
  • Pucci, D.; Crispini, A.; Ghedini, M.; Szerb, E.I.; La Deda, M. 2,2′-Biquinolines as test pilots for tuning the colour emission of luminescent mesomorphic silver(i) complexes. Dalton Transactions 2011, 40 (17), 4614–4622.
  • Deng, B.; Huang, H.Y.; Li, Q.G. Facile Fabrication and Enhanced Photoluminescence Property of Zn (II) Coordination Polymers with 2, 2′-biquinoline-4, 4′-dicarboxylic acid. Advanced Materials Research 2014, 881, 893–896.
  • Zhang, Y.-N.; Liu, J.-Q.; Wang, T.; Wen, G.-L.; Yang, G.-P.; Wang, Y.-Y.; Shi, Q.-Z. Design and syntheses of two novel Mn (II) and Cu (II) complexes with 2, 2′-biquinoline-4, 4′-dicarboxylate and N-containing bidentate co-ligand. Journal of Molecular Structure 2008, 878 (1), 116–123.
  • Kumar, A.; Buttry, D.A. Size-Dependent Anodic Dissolution of Water-Soluble Palladium Nanoparticles. The Journal of Physical Chemistry C 2013, 117 (50), 26783–26789.
  • Kim, S.; Joo, S.-W. Adsorption of 2, 2′-biquinoline and 8-hydroxyquinoline on gold and silver nanoparticle surfaces. Vibrational Spectroscopy 2005, 39 (1), 74–80.
  • Akyuz, S.; Akyuz, T.; Davies, J.E.D. FT-IR and FT-Raman spectroscopic investigations of adsorption of 2, 2′-biquinoline by smectite group clay minerals from Anatolia. Vibrational Spectroscopy 2000, 22 (1), 11–17.
  • Staniszewski, A.; Morris, A.J.; Ito, T.; Meyer, G.J. Conduction band mediated electron transfer across nanocrystalline TiO2 surfaces. The Journal of Physical Chemistry B 2007, 111 (24), 6822–6828.
  • Yanagida, M.; Miyamoto, K.; Sayama, K.; Kasuga, K.; Kurashige, M.; Abe, Y.; Sugihara, H. Reverse electron transfer from TiO2 to I2 in nanocrystalline TiO2 film electrodes with coadsorbed bipyridine and biquinoline ruthenium complexes. The Journal of Physical Chemistry C 2007, 111 (1), 201–209.
  • 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.
  • Aruna, S.T.; Arunima, S.; Latha, S.; William Grips, V.K. Preparation of oil-encapsulated microcapsules and tribological property of Ni composite coating. Materials and Manufacturing Processes 2016, 31 (1), 107–111.
  • Ortega, F.; Monzon, M.D.; Marrero, M.D.; Benitez, A.N. Computer cathodic orientation device: Functional properties of electroformed nickel shells. Materials and Manufacturing Processes 2015, 30 (6), 778–784.
  • Shi, K.; Zhitomirsky, I. Electrodeposition of carbon nanotubes triggered by cathodic and anodic reactions of dispersants. Materials and Manufacturing Processes 2015, 30 (6), 771–777.
  • 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.
  • Gupta, R.N.; Das, A.K.; Nagahanumaiah; Henal, S. Pulse electrocodeposited Ni–WC composite coating. Materials and Manufacturing Processes 2016, 31 (1), 42–47.
  • Shao, Z.; Xia, J.; Zhang, Y.; Jiang, H.; Li, G. Preparation of calcium phosphate/chitosan membranes by electrochemical deposition technique. Materials and Manufacturing Processes 2016, 31 (1), 53–61.
  • Ata, M.S.; Zhitomirsky, I. Electrochemical deposition of composites using deoxycholic acid dispersant. Materials and Manufacturing Processes 2016, 31 (1), 67–73.
  • 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. Materials and Manufacturing Processes 2016, 31 (1), 95–106.
  • Shen, S.C.; Pan, C.T.; Chang, S.J.; Lin, S.C. Wet deposition process for thin-film transistors. Materials and Manufacturing Processes 2014, 29 (4), 498–503.
  • Liu, Y.; Luo, D.; Zhang, T.; Shi, K.; Wojtal, P.; Wallar, C.J.; Ma, Q.; Daigle, E.G.; Kitai, A.; Xu, C.-Q. Film deposition mechanisms and properties of optically active chelating polymer and composites. Colloids and Surfaces A: Physicochemical and Engineering Aspects 2015, 487, 17–25.
  • Wojtal, P.; Chen, S.; Shi, K.; Mathews, R.; Zhitomirsky, I. Electrophoretic deposition of a memory-type flame retardant material. Materials Letters 2015, 153, 106–109.
  • Gulley-Stahl, H.; Hogan, P.A.; Schmidt, W.L.; Wall, S.J.; Buhrlage, A.; Bullen, H.A. Surface Complexation of catechol to metal oxides: an ATR-FTIR, adsorption, and dissolution study. Environmental Science & Technology 2010, 44 (11), 4116–4121.
  • Philip, D.; John, A.; Panicker, C.Y.; Varghese, H.T. FT-Raman, FT-IR and surface enhanced Raman scattering spectra of sodium salicylate. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 2001, 57 (8), 1561–1566.
  • Huang, R.; Pal, R.; Moon, G. Characteristics of sodium alginate membranes for the pervaporation dehydration of ethanol-water and isopropanol-water mixtures. Journal of Membrane Science 1999, 160 (1), 101–113.
  • Ata, M.; Liu, Y.; Zhitomirsky, I. A review of new methods of surface chemical modification, dispersion and electrophoretic deposition of metal oxide particles. RSC Advances 2014, 4 (43), 22716–22732.
  • Li, X.; Zhitomirsky, I. Electrodeposition of polypyrrole-carbon nanotube composites for electrochemical supercapacitors. Journal of Power Sources 2013, 221, 49–56.
  • Zhu, Y.; Shi, K.; Zhitomirsky, I. Anionic dopant-dispersants for synthesis of polypyrrole coated carbon nanotubes and fabrication of supercapacitor electrodes with high active mass loading. Journal of Materials Chemistry A 2014, 2 (35), 14666–14673.

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