Carbon nanotubes and their composites with polyaniline: application prospects
Main Article Content
Abstract
Carbon nanotubes with different morphology of the agglomerates have been obtained by CVD method, conditions for obtaining the CNT in bundles have been found. The methods of formation uniform layer of polyaniline on the surface of CNTs are developed. It is shown that the mass and structure of polyaniline deposited depends essentially on the content of carboxyl groups on the surface of original CNTs. The thermal stability of nanocomposites is studied
Article Details
This work is licensed under a Creative Commons Attribution 4.0 International License.
Authors who publish with this journal agree to the following terms:- Authors retain copyright and grant the journal right of first publication with the work simultaneously licensed under a Creative Commons Attribution License that allows others to share the work with an acknowledgement of the work's authorship and initial publication in this journal.
- Authors are able to enter into separate, additional contractual arrangements for the non-exclusive distribution of the journal's published version of the work (e.g., post it to an institutional repository or publish it in a book), with an acknowledgement of its initial publication in this journal.
- Authors are permitted and encouraged to post their work online (e.g., in institutional repositories or on their website) prior to and during the submission process, as it can lead to productive exchanges, as well as earlier and greater citation of published work (See The Effect of Open Access).
References
Dhawale D.S., Dubal D.P., Jamadade V.S., Salunkhe R.R., Lokhande C.D. “Fuzzy nanofibrous network of polyaniline electrode for supercapacitor application”, Synthetic Metals, vol. 160, pp. 519-522, 2010
Dhawale D.S., Salunkhe R.R., Jamadade V.S., Dubal D.P., Pawar S.M., Lokhande C.D. “Hydrophilic polyaniline nanofibrous architecture using electrosynthesis method for supercapacitor application”, Current Applied Physics, vol.10, pp. 904-909, 2010
Bhadra S., Khastgir D., Singha N. K., Lee J.H. “Progress in preparation, processing and applications of polyaniline”, Progress in Polymer Science, vol. 34, pp. 783-810, 2009
Lu X., Zhang W., Wang C., Wen T.-C., Wei Y. One-Dimensional Conducting Polymer Nanocomposites: Synthesis, Properties and Applications, Progress in Polymer Science, 2010 doi:10.1016/j.progpolymsci.2010.07.010
Snook G.A., Kao P., Best A.S. “Conducting-polymer-based supercapacitor devices and electrodes”, Journal of Power Sources, vol. 196, pp. 1-12, 2011
Sharma P., Bhatti T.S. “A review on electrochemical double-layer capacitors”, Energy Conversion and Management, vol. 51, pp. 2901-2912, 2010
Zhang Y., Feng H., Wu X., Wang L., Zhang A., Xia T., Dong H., Li X., Zhang L. “Progress of electrochemical capacitor electrode materials: A review”, International journal of hydrogen energy, vol. 34, pp. 4889-4899, 2009
Mandic Z., Rokovic M.K., Pokupcic T. “Polyaniline as cathodic material for electrochemical energy sources. The role of morphology”, Electrochimica Acta., vol. 54, pp. 2941-2950, 2009
Liu J., Zhou M., Fan L.-Z., Li P., Qu X. “Porous polyaniline exhibits highly enhanced electrochemical capacitance performance”, Electrochimica Acta., vol. 55, pp. 5819-5822, 2010
Wu T.-M., Lin Y.-W., Liao Ch.-S. “Preparation and characterization of polyaniline/multi-walled carbon nanotube composites”, Carbon, vol. 43, pp. 734-740, 2005
He B.-L., Dong B., Wang W., Li H.-L. “Performance of polyaniline/multi-walled carbon nanotubes composites as cathode for rechargeable lithium batteries”, Materials Chemistry and Physics, vol. 114, pp. 371-375, 2009
Meng C., Liu C., Fan S. “Flexible carbon nanotube/polyaniline paper-like films and their enhanced electrochemical properties”, Electrochemistry Communications, vol. 11, pp. 186-189, 2009
Xie X., Gao L., Sun J., Liu Y., Kajiura H., Li Y., Noda K. “The effect of electrodegradation processing on microstructure of polyaniline/singlewall carbon nanotube composite films”, Carbon, vol. 46, pp. 1145-1151, 2008
Zhang J., Kong L.-B., Wang B., Luo Y.-C., Kang L. “Insitu electrochemical polymerization of multi-walled carbon nanotube/polyaniline composite films for electrochemical supercapacitors”, Synthetic Metals, vol. 159, pp. 260-266, 2009
Zhou Y., Qin Z.-Y., Li L., Zhang Y., Wei Y.-L., Wang L.-F., Zhu M.-F. “Polyaniline/multi-walled carbon nanotube composites with core–shell structures as supercapacitor electrode materials”, Electrochimica Acta, vol. 55, pp. 3904-3908, 2010
Mi H., Zhang X., Xu Y., Xiao F. “Synthesis, characterization and electrochemical behavior of polypyrrole/carbon nanotube composites using organometallic-functionalized carbon nanotubes”, Applied Surface Science, vol. 256, pp. 2284-2288, 2010
Yang M., Cheng B., Song H., Chen X. “Preparation and electrochemical performance of poly- aniline-based carbon nanotubes as electrode material for supercapacitor”, Electrochimica Acta., vol. 55, pp. 7021-7027, 2010
Liu Q., Nayfeh M.H., Yau S.-T. “Brushedon flexible supercapacitor sheets using a nanocomposite of polyaniline and carbon nanotubes”, Journal of Power Sources, vol. 195, pp. 7480-7483, 2010
Ben-Valid S., Botka B., Kamara K., Zeng A., Yitzchaik S. “Spectroscopic and electrochemical study of hybrids containing conductive polymers and carbon nanotubes”, Carbon, vol. 48, pp. 2773-2781, 2010
Zhang H., Cao G., Wang W., Yuan K., Xu B., Zhang W., Cheng J., Yang Y. “Influence of microstructure on the capacitive performance of polyaniline/carbon nanotube array composite electrodes”, Electrochimica Acta., vol. 54, pp. 1153-1159, 2009
Trchova M., Konyushenko E.N., Stejskal J., Kovarova J., Ciric-Marjanovic G. “The conversion of polyaniline nanotubes to nitrogencontaining carbon nanotubes and their comparison with multi-walled carbon nanotubes”, Polymer Degradation and Stability, vol. 94, pp. 929-938, 2009