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Conducting polyaniline-titanium dioxide nanocomposites prepared by inverted emulsion polymerization

Polymer composites, v.31 no.1, 2010년, pp.83 - 88  

Karim, Mohammad Rezaul (Department of Advanced Organic Materials Science and Engineering, Kyungpook National University, Daegu 702-701, Korea) ,  Lee, Hyun Woo (Department of Advanced Organic Materials Science and Engineering, Kyungpook National University, Daegu 702-701, Korea) ,  Cheong, In Woo (Department of Applied Chemistry, Kyungpook National University, Daegu 702-701, Korea) ,  Park, Sung Min (Department of R&D Division) ,  Oh, Weontae (Department of Nano Engineering, Dong-eui University, Busan 614-714, Korea) ,  Yeum, Jeong Hyun (Department of Advanced Organic Materials Science and Engineering, Kyungpook National University, Daegu 702-701, Korea)

Abstract AI-Helper 아이콘AI-Helper

Conducting polyaniline (PAni)-titanium dioxide (TiO2) nanocomposites have been synthesized by the inverted emulsion polymerization method. Aqueous mixtures of aniline, a free-radical oxidant, and/or TiO2 nanoparticles (∼25 nm in diameter; mixture of anatase and rutile) are utilized to synthesize...

참고문헌 (41)

  1. Nano‐Surface Chemistry Rosoff M. 2002 

  2. Karim, Mohammad Rezaul, Lim, Kwon Taek, Lee, Chul Jae, Bhuiyan, Md Tauhidul Islam, Kim, Hee Jin, Park, Lee-Soon, Lee, Mu Sang. Synthesis of core-shell silver–polyaniline nanocomposites by gamma radiolysis method. Journal of polymer science Part A, Polymer chemistry, vol.45, no.24, 5741-5747.

  3. Malta, Marcos, Louarn, Guy, Errien, Nicolas, Torresi, Roberto M.. Nanofibers composite vanadium oxide/polyaniline: synthesis and characterization of an electroactive anisotropic structure. Electrochemistry communications, vol.5, no.12, 1011-1015.

  4. Grubbs, Robert B.. Hybrid metal–polymer composites from functional block copolymers. Journal of polymer science Part A, Polymer chemistry, vol.43, no.19, 4323-4336.

  5. Akelah, A., El-Deen, N.Salah, Hiltner, A., Baer, E., Moet, A.. Organophilic rubber-montmorillonite nanocomposites. Materials letters, vol.22, no.1, 97-102.

  6. Jang, S.H., Han, M.G., Im, S.S.. Preparation and characterization of conductive polyaniline/silica hybrid composites prepared by sol–gel process. Synthetic metals, vol.110, no.1, 17-23.

  7. Ray, Suprakas Sinha, Biswas, Mukul. Water-dispersible conducting nanocomposites of polyaniline and poly(N-vinylcarbazole) with nanodimensional zirconium dioxide. Synthetic metals, vol.108, no.3, 231-236.

  8. He, Yongjun. Synthesis of polyaniline/nano-CeO2 composite microspheres via a solid-stabilized emulsion route. Materials chemistry and physics, vol.92, no.1, 134-137.

  9. Kumar, R. V., Diamant, Y., Gedanken, A.. Sonochemical Synthesis and Characterization of Nanometer-Size Transition Metal Oxides from Metal Acetates. Chemistry of materials : a publication of the American Chemical Society, vol.12, no.8, 2301-2305.

  10. Karim, M. R., Lee, C. J., Lee, M. S.. Synthesis of conducting polypyrrole by radiolysis polymerization method. Polymers for advanced technologies, vol.18, no.11, 916-920.

  11. Rezaul Karim, M., Lee, C.J., Sarwaruddin Chowdhury, A.M., Nahar, N., Lee, M.S.. Radiolytic synthesis of conducting polypyrrole/carbon nanotube composites. Materials letters, vol.61, no.8, 1688-1692.

  12. Karim, Mohammad Rezaul, Lee, Chul Jae, Lee, Mu Sang. Synthesis and characterization of conducting polythiophene/carbon nanotubes composites. Journal of polymer science Part A, Polymer chemistry, vol.44, no.18, 5283-5290.

  13. Zhang, Zhongping, Han, Mingyong. One-step preparation of size-selected and well-dispersed silver nanocrystals in polyacrylonitrile by simultaneous reduction and polymerization. Journal of materials chemistry, vol.13, no.4, 641-643.

  14. Khanna, P.K, Lonkar, Sunil.P, Subbarao, V.V.V.S, Jun, Ki-Won. Polyaniline–CdS nanocomposite from organometallic cadmium precursor. Materials chemistry and physics, vol.87, no.1, 49-52.

  15. Karim, Mohammad Rezaul, Lee, Chul Jae, Park, Yong-Tae, Lee, Mu Sang. SWNTs coated by conducting polyaniline: Synthesis and modified properties. Synthetic metals, vol.151, no.2, 131-135.

  16. Heeger, A. J.. Semiconducting and Metallic Polymers: The Fourth Generation of Polymeric Materials. The journal of physical chemistry. B, Condensed matter, materials, surfaces, interfaces & biophysical, vol.105, no.36, 8475-8491.

  17. Hong, Kyung Hwa, Kang, Tae Jin. Polyaniline–nylon 6 composite nanowires prepared by emulsion polymerization and electrospinning process. Journal of applied polymer science, vol.99, no.3, 1277-1286.

  18. 10.1002/1521-4095(200103)13:5<350::AID-ADMA350>3.0.CO;2-X 

  19. Huang, Jiaxing, Kaner, Richard B.. Nanofiber Formation in the Chemical Polymerization of Aniline: A Mechanistic Study. Angewandte Chemie, vol.116, no.43, 5941-5945.

  20. Zhang, X., Goux, W. J., Manohar, S. K.. Synthesis of Polyaniline Nanofibers by “Nanofiber Seeding”. Journal of the American Chemical Society, vol.126, no.14, 4502-4503.

  21. O'Regan, Brian, Grätzel, Michael. A low-cost, high-efficiency solar cell based on dye-sensitized colloidal TiO2 films. Nature, vol.353, no.6346, 737-740.

  22. Chowdhury, D., Paul, A., Chattopadhyay, A.. Photocatalytic Polypyrrole−TiO2−Nanoparticles Composite Thin Film Generated at the Air−Water Interface. Langmuir : the ACS journal of surfaces and colloids, vol.21, no.9, 4123-4128.

  23. Machida, M., Norimoto, K., Watanabe, T., Hashimoto, K., Fujishima, A.. The effect of SiO2 addition in super‐hydrophilic property of TiO2 photocatalyst. Journal of materials science, vol.34, no.11, 2569-2574.

  24. Feng, Wei, Sun, Enhai, Fujii, Akihiko, Wu, Hongcai, Niihara, Koichi, Yoshino, Katsumi. Synthesis and Characterization of Photoconducting Polyaniline-TiO2 Nanocomposite. Bulletin of the Chemical Society of Japan, vol.73, no.11, 2627-2633.

  25. Zhang, L., Wan, M.. Polyaniline/TiO2 Composite Nanotubes. The journal of physical chemistry. B, Condensed matter, materials, surfaces, interfaces & biophysical, vol.107, no.28, 6748-6753.

  26. Bian, Chaoqing, Yu, Yijun, Xue, Gi. Synthesis of conducting polyaniline/TiO2 composite nanofibres by one-step in situ polymerization method. Journal of applied polymer science, vol.104, no.1, 21-26.

  27. Xia, H., Wang, Q.. Ultrasonic Irradiation: A Novel Approach To Prepare Conductive Polyaniline/Nanocrystalline Titanium Oxide Composites. Chemistry of materials : a publication of the American Chemical Society, vol.14, no.5, 2158-2165.

  28. Schnitzler, D. C., Zarbin, A. J. G.. Organic/Inorganic Hybrid Materials Formed From TiO2 Nanoparticles and Polyaniline. Journal of the Brazilian Chemical Society, vol.15, no.3, 378-384.

  29. Osterholm, J.-E., Cao, Y., Klavetter, F., Smith, P.. Emulsion polymerization of aniline. Polymer, vol.35, no.13, 2902-2906.

  30. Kinlen, P. J., Liu, J., Ding, Y., Graham, C. R., Remsen, E. E.. Emulsion Polymerization Process for Organically Soluble and Electrically Conducting Polyaniline. Macromolecules, vol.31, no.6, 1735-1744.

  31. Yang, S., Ruckenstein, E.. Processable conductive composites of polyaniline/poly(alkyl methacrylate) prepared via an emulsion method. Synthetic metals, vol.59, no.1, 1-12.

  32. Ruckenstein, Eli, Sun, Yue. Polyaniline-containing electrical conductive composite prepared by two inverted emulsion pathways. Synthetic metals, vol.74, no.2, 107-113.

  33. Yan, Feng, Xue, Gi. Synthesis and characterization of electrically conducting polyaniline in water–oil microemulsion. Journal of materials chemistry, vol.9, no.12, 3035-3039.

  34. Li, Xingwei, Chen, Wei, Bian, Chaoqing, He, Jinbo, Xu, Ning, Xue, Gi. Surface modification of TiO2 nanoparticles by polyaniline. Applied surface science, vol.217, no.1, 16-22.

  35. Chiou, Nan-Rong, Epstein, Arthur J.. A Simple Approach to Control the Growth of Polyaniline Nanofibers. Synthetic metals, vol.153, no.1, 69-72.

  36. 10.1002/(SICI)1097-0126(199704)42:4<380::AID-PI727>3.0.CO;2-F 

  37. Liu, H., Hu, X. B., Wang, J. Y., Boughton, R. I.. Structure, Conductivity, and Thermopower of Crystalline Polyaniline Synthesized by the Ultrasonic Irradiation Polymerization Method. Macromolecules, vol.35, no.25, 9414-9419.

  38. Karim, Mohammad Rezaul, Lee, Chul Jae, Lee, Mu Sang. Synthesis and characterization of conducting polyaniline-activated carbon nanocomposites. Journal of applied polymer science, vol.103, no.3, 1973-1977.

  39. Dai, L., Lu, J., Matthews, B., Mau, A. W. H.. Doping of Conducting Polymers by Sulfonated Fullerene Derivatives and Dendrimers. The journal of physical chemistry. B, Condensed matter, materials, surfaces, interfaces & biophysical, vol.102, no.21, 4049-4053.

  40. Schemid, A. L., de Torresi, S. I. C., Bassetto, A. N., Carlos, I. A.. Structural, Morphological and Spectroelectrochemical Characterization of Poly (2-ethyl aniline). Journal of the Brazilian Chemical Society, vol.11, no.3, 317-323.

  41. Palaniappan, S., Narayana, B. H.. Temperature effect on conducting polyaniline salts: Thermal and spectral studies. Journal of polymer science. Part A, Polymer chemistry, vol.32, no.13, 2431-2436.

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