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Enhanced magnetoconductivity and electrical property of MWCNT-CdS nanocomposite embedded in polyaniline
Institution:1. Chemical Engineering Division, Institute of Nuclear Energy Research, Taoyuan 325, Taiwan, ROC;2. Department of Electronic Engineering, National Quemoy University, Kinmen 892, Taiwan, ROC;3. Center of General Education, National Taichung Institute of Technology, Taichung 404, Taiwan, ROC
Abstract:PANI/MWCNT-CdS nanocomposites with different content of CdS wt.% has been synthesized by the chemical oxidative in-situ polymerization reaction of aniline in the presence of multi-walled carbon nanotubes (MWCNT). TEM, XRD, FTIR, and TGA studies were done for the structural and thermal characterization of the samples respectively. The particle size of CdS nanoparticles distributes in between 2.7 and 4.8 nm. XRD spectrum reveals that the co-existence of MWCNT, CdS in PANI matrix, where CdS forms a hexagonal structure. TGA result shows that nanocomposite becomes more thermally stable with the increase in CdS content. The dc electrical transport property of PANI/MWCNT-CdS nanocomposites has been investigated within a temperature range 77 ≤ T ≤ 300 K. The dc conductivity follows a 3D variable range hopping (VRH) model. A large magnetoconductivity change (19%) is observed for 2 wt% CdS content in PANI/MWCNT-CdS, which is explained by the wave function shrinkage model.
Keywords:Polyaniline  Cadmium sulphide  X-ray diffraction  Electrical transport  Magnetoconductivity
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