4.2 Article

Hybrid gate dielectrics: a comparative study between polyvinyl alcohol/SiO2 nanocomposite and pure polyvinyl alcohol thin-film transistors

Journal

BULLETIN OF MATERIALS SCIENCE
Volume 42, Issue 1, Pages -

Publisher

INDIAN ACAD SCIENCES
DOI: 10.1007/s12034-018-1695-y

Keywords

Polymer dielectrics; surface chemistry; electrical and structural properties; scanning probe microscopy (SPM); ambipolar thin-film transistor

Funding

  1. Fondation Louvain (Partenariat Solvay)
  2. Belgian Federal Science Policy [IAP P6/27]
  3. F.R.S.-FNRS

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Polyvinyl alcohol (PVA) thin films as polymer gate dielectrics, with and without SiO2 nanoparticles were fabricated using spin-coating. Surface roughness and hydrophilicity of PVA and PVA/SiO2 thin films were studied by contact-angle measurements and atomic force microscopy. The dielectric properties were characterized via capacitance and leakage-current measurements on metal-insulator-metal structures. In order to further investigate the application potential of such materials as a replacement for conventional inorganic dielectrics such as SiO2 in organic thin-film transistors, devices were fabricated based on these polymers using , -dihexylquaterthiophene as an active layer. Performance of the devices was realized by electrical measurements and Kelvin probe force microscopy. All transistors showed hole and electron mobilities in the low-voltage range. PVA/SiO2 films showed larger capacitance, less hydrophilicity, rougher surfaces and considerable leakage currents compared with those with neat PVA. Although integrating nanoparticles modified surface electronic properties and showed a shift in surface potential as observed in Kelvin probe force measurements, it appears that non-polymeric and neat polymeric dielectric materials could still be a privilege to nanocomposite polymeric dielectrics for optoelectronic applications.

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