207
Views
5
CrossRef citations to date
0
Altmetric
Original Articles

Preparation, Characterization, and Conductivity of Polyaniline Doped with 12-Tungstoboric Acid

, , , , &
Pages 381-392 | Received 19 Mar 2013, Accepted 05 Jan 2015, Published online: 24 Mar 2015

References

  • Mizuno, N.; Misono, M. Heterogeneous catalysis. Chem. Rev. 1998, 98, 199.
  • Mioc, U. B.; Petkovic, M.; Davidovic, M.; Peric, M.; Abdul-Redah, T. Proton and protonic entities in solid heteropoly compounds: An ab initio calculation of the environmental effect on the H5O2+ ion. J. Mol. Struct. 2008, 885, 131.
  • Baker, L. C. W.; Glick, D. C. Present general status of understanding of heteropoly electrolytes and a tracing of some major highlights in the history of their elucidation. Chem. Rev. 1998, 98, 3.
  • Okuhara, T. Water-tolerant solid acid catalysts. Chem. Rev. 2002, 102, 3641.
  • Nakamura, O.; Ogino, I.; Kodama, T. Temperature and humidity ranges of some hydrates of high-proton-conductive dodecamolybdophosphoric acid and dodecatungstophosphoric acid crystals under an atmosphere of hydrogen or either oxygen or air. Solid State Ionics 1981, 3–4, 347.
  • Katsoulis, D. E. A survey of applications of polyoxometalates. Chem. Rev. 1998, 98, 359.
  • Palaniappan, S.; John, A. Polyaniline materials by emulsion polymerization pathway. Prog. Polym. Sci. 2008, 33, 732.
  • Sedenkova, I.; Trchova, M.; Stejskal, J. Thermal degradation of polyaniline films prepared in solutions of strong and weak acids and in water-FTIR and Raman spectroscopic studies. Polym. Degrad. Stabil. 2008, 93, 2147.
  • Li, J. J.; Tang, X. F.; Li, H.; Yan, Y. G.; Zhang, Q. J. Synthesis and thermoelectric properties of hydrochloric acid-doped polyaniline. Synth. Met. 2010, 160, 1153.
  • Abdiryim, T.; Zhang, X. G.; Jamal, R. Comparative studies of solid-state synthesized polyaniline doped with inorganic acids. Mater. Chem. Phys. 2005, 90, 367.
  • Zhang, L. J.; Wan, M. X. Self-assembly of polyaniline form nanotubes to hollow microspheres. Adv. Funct. Mater. 2003, 13, 815.
  • Guo, X. M.; Luo, K.; Shi, N. L. Preparation and characterization of polyaniline nanofibers by template-free method. J. Mater. Sci. Technol. 2005, 21, 179.
  • Pud, A.; Ogurtsov, N.; Korzhenko, A.; Shapoval, G. Some aspects of preparation methods and properties of polyaniline blends and composites with organic polymers. Prog. Polym. Sci. 2003, 28, 1701.
  • Bhadra, S.; Khastgir, D.; Singha, N. K.; Lee, J. H. Progress in preparation, processing and applications of polyaniline. Prog. Polym. Sci. 2009, 34, 783.
  • Lu, X. F.; Zhang, W. J.; Wang, C.; Wen, Ten-Chin; Wei, Y. One-dimensional conducting polymer nanocomposites: synthesis, properties and applications. Prog. Polym. Sci. 2011, 36, 671.
  • Long, Y. Z.; Li, M. M.; Gu, C. Z.; Wan, M. X.; Duvaild, Jean-Luc; Liu, Z. W.; Fan, Z. Y. Recent advances in synthesis, physical properties and applications of conducting polymer nanotubes and nanofibers. Prog. Polym. Sci. 2011, 36, 1415.
  • Molina, J.; Fernández, J.; Del Río, A. I.; Bonastre, J.; Cases, F. Electrochemical synthesis of polyaniline on conducting fabrics of polyester covered with polypyrrole/PW12O403− chemical and electrochemical characterization. Synth. Met. 2011, 161, 953.
  • Papagianni, G. G.; Stergiou, D. V.; Armatas, G. S.; Kanatzidis, M. G.; Prodromidis, M. I. Synthesis, characterization and performance of polyaniline-polyoxometalates (XM12, X = P, Si and M = Mo, W) composites as electrocatalysts of bromates. Sensor Actuat B 2012, 173, 346.
  • Lapkowski, M.; Turek, W.; Barth, M.; Lefrant, S. Changes in catalytic properties of substituted and unsubstituted heteropolyacids in conductive polymer matrix. Synth. Met. 1995, 69, 127.
  • Mazloum-Ardakani, M.; Sheikh-Mohseni, M. A.; Abdollahi-Alibeik, M. Fabrication of an electrochemical sensor based on nanostructured polyaniline doped with tungstophosphoric acid for simultaneous determination of low concentrations of norepinephrine, acetaminophen and folic acid. J. Mol. Liq. 2013, 178, 63.
  • Stejskal, J.; Sapurina, I.; Trchova, M. Polyaniline nanostructures and the role of aniline oligomers in their formation. Prog. Polym. Sci. 2010, 35, 1420.
  • Gospodinova, N.; Terlemezyan, L. Conducting polymers prepared by oxidative polymerization: polyaniline. Prog. Polym. Sci. 1998, 23, 1443.
  • Ciric-Marjanovic, G.; Holclajtner-Antunovic, I.; Mentus, S.; Bajuk-Bogdanovic, D.; Jesic, D.; Manojlovic, D.; Trifunovic, S.; Stejskal, J. Self-assembled polyaniline 12-tungstophosphate micro/nanostructures. Synth. Met. 2010, 160, 1463.
  • Shikata, S.; Nakata, S.; Okuhara, T.; Misono, M. Catalysis by heteropoly compounds. 32. Synthesis of methyl tert-butyl ether catalyzed by heteropolyacids supported on silica1. J. Catal. 1997, 166, 263.
  • Rocchiccioli-Deltcheff, C.; Fournier, M.; Franck, R.; Thouvenot, R. Vibrational investigations of polyoxometalates. 2. Evidence for anion-anion interactions in molybdenum (V1) and tungsten (V1) compounds related to the Keggin structure. Inorg. Chem. 1983, 22, 207.
  • Kim, J. K.; Choi, J. H.; Song, J. H.; Yi, J.; Song, I. K. Etherification of n-butanol to Di-n-butyl ether over HnXW12O40 (X = Co2+, B3+, Si4+, and P5+) Keggin heteropolyacid catalysts. Catal. Commun. 2012, 27, 5.
  • Wang, J. P.; Li, J.; Niu, J. Y. Synthesis, crystal structure and characterization of a 2-D network organic-inorganic hybrid polymer with [α-BW12O40]5− as building blocks. Sci. China. Ser. B 2006, 49, 437.
  • Rashkin, J. A.; Pierron, E. D.; Parker, D. L. Thermal and in situ X-ray studies of some heteropoly compounds: H5[BW12O40]·10H2O, (NH4)5[BW12O40]·3H2O, Na5[P2Mo18O62]·2H20, and (NH4)3[PMO12O40]·2H2O. J. Phys. Chem. 1967, 71, 1265.
  • Zhang, J. L.; Wang, H.; Yang, S. M.; Wang, S. H.; Yang, S. M. Enhanced conductivity and fluorescence of polyaniline doped with Eu3+, Tb3+, and Y3+ ions. J. Appl. Polym. Sci. 2012, 125, 2494.
  • Hasik, M.; Drelinkiewicz, A.; Wenda, E.; Paluszkiewicz, C.; Quillard, S. FTIR spectroscopic investigations of polyaniline derivatives-palladium systems. J. Mol. Struct. 2001, 596, 89.
  • Trchova, M.; Sedenkova, I.; Tobolkova, E.; Stejskal, J. FTIR spectroscopic and conductivity study of the thermal degradation of polyaniline films. Polym. Degrad. Stabil. 2004, 86, 179.
  • Rakic, A.; Bajuk-Bogdanovic, D.; Mojovic, M.; Ciric-Marjanovic, G.; Milojevic-Rakic, M.; Mentus, S.; Marjanovic, B.; Trchova, M.; Stejskal, J. Oxidation of aniline in dopant-free template-free dilute reaction media. Mater. Chem. Phys. 2011, 127, 501.
  • Anilkumar, P.; Jayakannan, M. New renewable resource amphiphilic molecular design for size-controlled and highly ordered polyaniline nanofibers. Langmuir 2006, 22, 5952.
  • Anilkumar, P.; Jayakannan, M. Fluorescent tagged probing agent and structure-directing amphiphilic molecular design for polyaniline nanomaterials via self-assembly process. J. Phys. Chem. C 2007, 111, 3591.
  • Yoon, S. B.; Yoon, E. H.; Kim, K. B. Electrochemical properties of leucoemeraldine, emeraldine, and pernigraniline forms of polyaniline/multi-wall carbon nanotube nanocomposites for supercapacitor applications. J. Power Sources 2011, 196, 10791.
  • Wu, Z. Q.; Chen, X. D.; Zhu, S. B.; Yao, Y.; Guo, H. H. Effect of humidity on electrical properties of micro/nano-polyaniline thin films with different D-CSA doping degree. Measurement 2013, 46, 411.

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.