• Title of article

    Bacterial adhesion studies on titanium, titanium nitride and modified hydroxyapatite thin films

  • Author/Authors

    Jeyachandran، نويسنده , , Y.L. and Venkatachalam، نويسنده , , S. and Karunagaran، نويسنده , , B. and Narayandass، نويسنده , , Sa.K. and Mangalaraj، نويسنده , , D. and Bao، نويسنده , , C.Y. and Zhang، نويسنده , , C.L.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2007
  • Pages
    7
  • From page
    35
  • To page
    41
  • Abstract
    A qualitative study on adhesion of the oral bacteria Porphyromonas gingivalis on titanium (Ti), titanium nitride (TiN), fluorine modified hydroxyapatite (FHA) and zinc modified FHA (Zn-FHA) thin films is investigated. Ti and TiN thin films were deposited by DC magnetron sputtering and hydroxyapatite-based films were prepared by solgel method. The crystalline structure, optical characteristics, chemical composition and surface topography of the films were studied by XRD, optical transmission, XPS, EDAX and AFM measurements. The predominant crystallite orientation in the Ti and TiN films was along (002) and (111) of hcp and cubic structures, respectively. The Ti : O : N composition ratio in the surface of the Ti and TiN films was found to be 7 : 21 : 1 and 3 : 8 : 2, respectively. The atomic concentration ratio (Zn + Ca) / P in Zn-FHA film was found to be 1.74 whereby the Zn replaced 3.2% of Ca. The rough surface feature in modified HA films was clearly observed in the SEM images and the surface roughness (rms) of Ti and TiN films was 2.49 and 3.5 nm, respectively, as observed using AFM. The film samples were sterilized, treated in the bacteria culture medium, processed and analyzed using SEM. Surface roughness of the films was found to have least influence on the bacterial adhesion. More bacteria were observed on the TiN film with oxide nitride surface layer and less number of adhered bacteria was noticed on the Ti film with native surface oxide layer and on Zn-FHA film.
  • Keywords
    Chemical composition , bacterial adhesion , Thin films
  • Journal title
    Materials Science and Engineering C
  • Serial Year
    2007
  • Journal title
    Materials Science and Engineering C
  • Record number

    2096365