• DocumentCode
    2731192
  • Title

    Effect of thickness on the electrical and optical properties of MEH-PPV:TiO2 nanocomposite for organic solar cell application

  • Author

    Zahid, F.S.S. ; Sarah, M.S.P. ; Rusop, M.

  • Author_Institution
    Fac. of Electr. Eng., Univ. Teknol. MARA (UiTM), Shah Alam, Malaysia
  • fYear
    2011
  • fDate
    25-28 Sept. 2011
  • Firstpage
    449
  • Lastpage
    453
  • Abstract
    The performance and properties of organic/inorganic nanocomposited poly[2-methoxy 5-(2´-ethyl-hexyloxy)-1,4-phenylene vinylene] (MEH-PPV):TiO2 thin film at different thickness was investigated. MEH-PPV:TiO2 nanocomposite thin film has been prepared on indium tin oxide (ITO) substrate using spin-coating method with different deposition time from 1 to 10 times at room temperature. The effect of different thickness on the electrical and optical properties of MEH-PPV:TiO2 was characterized by using solar simulator under AM 1.5, 100mW/cm2 white light illumination and UV-Vis-NIR spectrophotometer respectively. From the current-voltage (I-V) measurement the result shows for 3 times of deposition, at thickness 719.413 nm gives the highest photoconductivity value, 35.2336×103 S.m-1. While for photoconductivity of 5, 7 and 10 times of deposition, there is no significant improvement were obtained. The optical properties were found to be strongly dependent on the thickness of nanocomposite thin films. The absorption coefficient reveals an improvement as the number of thickness increases with strong absorption at wavelength of 500 nm in visible ranges and 310 nm in UV ranges respectively.
  • Keywords
    absorption coefficients; infrared spectra; nanocomposites; nanofabrication; organic semiconductors; photoconductivity; semiconductor thin films; spin coating; titanium compounds; ultraviolet spectra; visible spectra; ITO; TiO2; UV-Vis-NIR; absorption coefficient; current-voltage measurement; electrical properties; indium tin oxide substrate; light illumination; optical properties; organic solar cell; organic-inorganic nanocomposite; photoconductivity; poly[2-methoxy 5-(2´-ethyl-hexyloxy)-1,4-phenylene vinylene] thin film; size 719.413 nm; solar simulator; spin-coating method; temperature 293 K to 298 K; Absorption; Optical films; Photoconductivity; Photonic band gap; Photovoltaic cells; Plastics; Absorbance coefficient; Nanocomposited MEH-PPV:TiO2; Photoconductivity; Spin-coating; Thickness;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Industrial Electronics and Applications (ISIEA), 2011 IEEE Symposium on
  • Conference_Location
    Langkawi
  • Print_ISBN
    978-1-4577-1418-4
  • Type

    conf

  • DOI
    10.1109/ISIEA.2011.6108750
  • Filename
    6108750