DocumentCode
636197
Title
Novel platinum black electroplating technique improving mechanical stability
Author
Raeyoung Kim ; Yoonkey Nam
Author_Institution
Dept. of Bio & Brain Eng., Korea Adv. Inst. of Sci. & Technol. (KAIST), Daejeon, South Korea
fYear
2013
fDate
3-7 July 2013
Firstpage
184
Lastpage
187
Abstract
Platinum black microelectrodes are widely used as an effective neural signal recording sensor. The simple fabrication process, high quality signal recording and proper biocompatibility are the main advantages of platinum black microelectrodes. When microelectrodes are exposed to actual biological system, various physical stimuli are applied. However, the porous structure of platinum black is vulnerable to external stimuli and destroyed easily. The impedance level of the microelectrode increases when the microelectrodes are damaged resulting in decreased recording performance. In this study, we developed mechanically stable platinum black microelectrodes by adding polydopamine. The polydopamine layer was added between the platinum black structures by electrodeposition method. The initial impedance level of platinum black only microelectrodes and polydopamine added microelectrodes were similar but after applying ultrasonication the impedance value dramatically increased for platinum black only microelectrodes, whereas polydopamine added microelectrodes showed little increase which were nearly retained initial values. Polydopamine added platinum black microelectrodes are expected to extend the availability as neural sensors.
Keywords
bioMEMS; biomedical electrodes; biomedical materials; electroplating; mechanical stability; microelectrodes; microfabrication; neurophysiology; platinum; polymers; porous materials; Pt; biocompatibility; electrodeposition method; fabrication process; high quality signal recording; mechanical stability; mechanically stable platinum black microelectrodes; microelectrode impedance level; neural sensors; neural signal recording sensor; platinum black electroplating technique; platinum black porous structure; platinum black structure; polydopamine layer; ultrasonication; Gold; Impedance; Materials; Microelectrodes; Platinum; Surface treatment;
fLanguage
English
Publisher
ieee
Conference_Titel
Engineering in Medicine and Biology Society (EMBC), 2013 35th Annual International Conference of the IEEE
Conference_Location
Osaka
ISSN
1557-170X
Type
conf
DOI
10.1109/EMBC.2013.6609468
Filename
6609468
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