• Title of article

    Fabrication of planarised conductively patterned diamond for bio-applications

  • Author/Authors

    Tong، نويسنده , , Wei and Fox، نويسنده , , Kate and Ganesan، نويسنده , , Kumaravelu and Turnley، نويسنده , , Ann M. and Shimoni، نويسنده , , Olga and Tran، نويسنده , , Phong A. and Lohrmann، نويسنده , , Alexander and McFarlane، نويسنده , , Thomas and Ahnood، نويسنده , , Arman and Garrett، نويسنده , , David J. and Meffin، نويسنده , , Hamish and OʹBrien-Simpson، نويسنده , , Neil M. and Reynolds، نويسنده , , Er، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2014
  • Pages
    10
  • From page
    135
  • To page
    144
  • Abstract
    The development of smooth, featureless surfaces for biomedical microelectronics is a challenging feat. Other than the traditional electronic materials like silicon, few microelectronic circuits can be produced with conductive features without compromising the surface topography and/or biocompatibility. Diamond is fast becoming a highly sought after biomaterial for electrical stimulation, however, its inherent surface roughness introduced by the growth process limits its applications in electronic circuitry. In this study, we introduce a fabrication method for developing conductive features in an insulating diamond substrate whilst maintaining a planar topography. Using a combination of microwave plasma enhanced chemical vapour deposition, inductively coupled plasma reactive ion etching, secondary diamond growth and silicon wet-etching, we have produced a patterned substrate in which the surface roughness at the interface between the conducting and insulating diamond is approximately 3 nm. We also show that the patterned smooth topography is capable of neuronal cell adhesion and growth whilst restricting bacterial adhesion.
  • Keywords
    Antibacterial , biocompatible , diamond , planar , Neural
  • Journal title
    Materials Science and Engineering C
  • Serial Year
    2014
  • Journal title
    Materials Science and Engineering C
  • Record number

    2104896