Synthesis and pseudocapacitive studies of composite films of polyaniline and manganese oxide nanoparticles
We report the synthesis and pseudocapacitive studies of a composite film (PANI-ND-MnO 2) of polyaniline (PANI) and manganese oxide (MnO 2) nanoparticles. To enhance the interaction of MnO 2 and PANI, the surfaces of MnO 2 nanoparticles were modified by a silane coupling reagent, triethoxysilylmethyl...
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Veröffentlicht in: | Journal of power sources 2010-06, Vol.195 (11), p.3742-3747 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | We report the synthesis and pseudocapacitive studies of a composite film (PANI-ND-MnO
2) of polyaniline (PANI) and manganese oxide (MnO
2) nanoparticles. To enhance the interaction of MnO
2 and PANI, the surfaces of MnO
2 nanoparticles were modified by a silane coupling reagent, triethoxysilylmethyl N-substituted aniline (ND42). The composite film was obtained via controlled electro-co-polymerization of aniline and N-substituted aniline grafted on surfaces of MnO
2 nanoparticles (ND-MnO
2) on a carbon cloth in a electrolyte of 0.5
M H
2SO
4 and 0.6
M (NaPO
3)
6. In comparison to similarly prepared PANI film, the incorporation of MnO
2 nanoparticles substantially increases the effective surface area of the film by reducing the size of rod-like PANI aggregates and avoiding the entanglement of these PANI nanorods. Significantly, we observed significant enhancement of specific capacitance in PANI-ND-MnO
2 film compared to PANI–MnO
2 film prepared in a similar condition, indicating that the presence of the coupling reagent can improve the electrochemical performance of PANI composite film. A symmetric model capacitor has been fabricated by using two PANI-ND-MnO
2 nanocomposite films as electrodes. The PANI-ND-MnO
2 capacitor showed an average specific capacitance of ∼80
F
g
−1 and a stable coulombic efficiency of ∼98% over 1000 cycles. The results demonstrated that PANI-ND-MnO
2 nanocomposites are promising materials for supercapacitor electrode and the importance of designing and manipulating the interaction between PANI and MnO
2 for fundamentally improving capacitive properties. |
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ISSN: | 0378-7753 1873-2755 |
DOI: | 10.1016/j.jpowsour.2009.12.036 |