Title :
Conductivity enhancement of nanocomposited MEH-PPV:I-MWNT thin film
Author :
Sarah, M.S.P. ; Zahid, F.S. ; Noor, U.M. ; Rusop, M.
Author_Institution :
Fac. of Electr. Eng., Univ. Teknol. MARA, Shah Alam, Malaysia
Abstract :
In this paper, we report the electrical conductivity of nanocomposited MEH-PPV:I-MWNT thin film by varying the composition of Iodine doped multi-walled nanotubes (I-MWNT) in MEH-PPV matrix from 0, 2 and 4 wt%. Electrical conductivity showed increasing in value as the composition of I-MWNT increased from 0, 2 to 4 wt%. The value of conductivity is very outstanding when the polymer was blended with I-MWNT where the value rise from pure MEH-PPV, 81.6 × 10-4 S/m to 67.68 × 104 and 80.28 × 104 S/m for 2 and 4 wt% respectively. The surface morphology was investigated using atomic for microscopy (AFM). Roughness of the thin film showed decrement in value from 5.385 nm, 0.751 nm and 0.643 nm for 0, 2, and 4 wt% respectively. Meanwhile, the absorbance value increase slightly from about 0.16 (0 wt%) to about 0.165 and 0.17 (2 and 4 wt% respectively). The low absorbance shows that low photon is absorbed and therefore, there is no current changes when the sample is illuminated compared to in dark.
Keywords :
atomic force microscopy; carbon nanotubes; conducting polymers; dark conductivity; filled polymers; iodine; nanocomposites; polymer blends; surface morphology; surface roughness; thin films; visible spectra; AFM; C:I; MEH-PPV matrix; absorbance value; atomic force microscopy; electrical conductivity enhancement; iodine doped multiwalled nanotubes; nanocomposited MEH-PPV:I-MWNT thin film; polymer blend; surface morphology; thin film roughness; Carbon nanotubes; Conductivity; Polymers; Rough surfaces; Surface morphology; Surface roughness; I-MWNT; MEH-PPV; conductivity; nanocomposites;
Conference_Titel :
Humanities, Science and Engineering Research (SHUSER), 2012 IEEE Symposium on
Conference_Location :
Kuala Lumpur
Print_ISBN :
978-1-4673-1311-7
DOI :
10.1109/SHUSER.2012.6268903