• DocumentCode
    1082770
  • Title

    Integration of Au Nanorods With Flexible Thin-Film Microelectrode Arrays for Improved Neural Interfaces

  • Author

    Zhou, Hong-Bo ; Li, Gang ; Sun, Xiao-Na ; Zhu, Zhuang-Hui ; Jin, Qing-Hui ; Zhao, Jian-Long ; Ren, Qiu-shi

  • Author_Institution
    Shanghai Inst. of Microsyst. & Inf. Technol., Chinese Acad. of Sci., Shanghai, China
  • Volume
    18
  • Issue
    1
  • fYear
    2009
  • Firstpage
    88
  • Lastpage
    96
  • Abstract
    In neural prosthetic systems, a low-impedance electrode-tissue interface is important for maintaining signal quality for recording, as well as effective charge transfer for stimulation. However, neural microelectrodes often have high impedance due to their small surface areas. In this paper, we present a simple method of increasing their effective surface areas by introducing nanostructures on the electrode sites. The method combines photolithography and electron-beam evaporation with a locally patterned anodized porous alumina template to integrate Au-nanorod arrays on the flexible thin-film microelectrode, which can significantly increase the effective surface area and decrease impedance due to its 3-D and compact nanostructures. Moreover, the geometrical and electrical properties of Au-nanorod electrodes were demonstrated and compared with conventional planar microelectrodes by using a scanning electron microscope and an impedance spectroscopy system. Experimental results showed that approximately 25 times lower interface impedance was achieved for this nanostructured microelectrode. Such Au-nanorod integrated microelectrode arrays will be a promising tool for neural engineering.
  • Keywords
    alumina; bioelectric phenomena; biological tissues; biomedical electrodes; evaporation; gold; interface structure; nanobiotechnology; nanostructured materials; neural nets; photolithography; prosthetics; scanning electron microscopy; Al2O3; Au; Au nanorod array; electron-beam evaporation; impedance spectroscopy system; interface impedance; low-impedance electrode-tissue interface; nanostructures; neural interfaces; neural microelectrodes; neural prosthetic; patterned anodized porous alumina template; photolithography; scanning electron microscope; thin-film microelectrode arrays; Electron-beam evaporation; flexible; neural electrode; porous alumina;
  • fLanguage
    English
  • Journal_Title
    Microelectromechanical Systems, Journal of
  • Publisher
    ieee
  • ISSN
    1057-7157
  • Type

    jour

  • DOI
    10.1109/JMEMS.2008.2011122
  • Filename
    4760211