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K. S. Ryu, K. M. Kim, S. G. Kang, G. J. Lee, J. Joo and S. H. Chang, “Electrochemical and Physical Characteriza-tion of Lithium Ionic Salt Doped Polyaniline as a Poly-mer Electrode of Lithium Secondary Battery,” Synthetic Metals, Vol. 110, No. 3, 2000, pp. 213-217. doi:10.1016/S0379-6779(99)00288-X
has been cited by the following article:
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TITLE:
Supported TritonX-100 Polyaniline Nano-Porous Electrically Active Film onto Indium-Tin-Oxide Probe for Sensors Application
AUTHORS:
Raju Khan
KEYWORDS:
Electrochemical Polymerization, Non ionic surfactant, Conducting Polyaniline, Atomic Force Microscopy, Scanning Tunneling Microscopy.
JOURNAL NAME:
Advances in Chemical Engineering and Science,
Vol.1 No.3,
July
22,
2011
ABSTRACT: Supported tritonX100 polyaniline nano-porous electrically active film has been fabricated successfully onto indium-tin-oxide conducting probe using electrochemical polymerization process. The doping of TX-100 in the polymeric network of PANI was suggested using cyclic voltammeter, UV-vis spectroscopy, and Fourier Transform Infrared spectroscopy. The change in the surface morphology of PANI thin film due to incorporation of tritonX-100 was investigated using Atomic Forced Microscopy and porosity has been confirmed scanning electron microscopy, respectively. The surface morphology, uniformly disperse hexagonal close packing of TX-100 in PANI matrices due to the incorporation of TX-100 in polymeric network of PANI was confirmed by Atomic Force Microscopy. The electrical conductivity of PANI-TX-100 increases from 1.06 x 10-2 S/cm-1 to 4.95 x 10-2 S/cm-1 as the amount of TX-100 increases during the polymerization. The change in the morphology and electrical conductivity of PANI due to incorporation of TX-100 prove as a promising material for the sensing application.