pp. 225-234
S&M1487 Research Paper of Special Issue https://doi.org/10.18494/SAM.2018.1741 Published: January 26, 2018 Study of Al-doped ZnO Transparent Stimulus Electrode for Fully Implantable Retinal Prosthesis with Three-dimensionally Stacked Retinal Prosthesis Chip [PDF] Hisashi Kino, Takafumi Fukushima, and Tetsu Tanaka (Received September 14, 2017; Accepted November 30, 2017) Keywords: retinal prosthesis, 3D-IC, stimulus electrode, Al-doped ZnO
To realize a three-dimensionally (3D) stacked retinal prosthesis chip having a large stimulus electrode area and a large photodiode area, the fundamental properties of Al-doped ZnO transparent stimulus electrode were investigated in detail. The test samples were fabricated, and thin film property and stimulus electrode characteristics were also evaluated using several methods. It was clearly observed that both crystallinity and transmittances of Al-doped ZnO thin film were dependent on the substrate temperature during thin-film formation. A better crystallinity and a transmittance of more than 85% in the visible range were achieved for the Al-doped ZnO thin film with a substrate temperature of 200 ℃. Furthermore, good electrochemical impedance characteristics and adequate CIC values of 0.07 mC/cm2 were obtained to elicit visual sensations. Consequently, Al-doped ZnO has the possibility of becoming the transparent stimulus electrode for a 3D stacked retinal prosthesis chip.
Corresponding author: Tetsu TanakaCite this article Hisashi Kino, Takafumi Fukushima, and Tetsu Tanaka, Study of Al-doped ZnO Transparent Stimulus Electrode for Fully Implantable Retinal Prosthesis with Three-dimensionally Stacked Retinal Prosthesis Chip, Sens. Mater., Vol. 30, No. 2, 2018, p. 225-234. |