Title of article
Development of pinhole-free amorphous aluminum oxide protective layers for biomedical device applications
Author/Authors
Litvinov، نويسنده , , Julia Y. Wang، نويسنده , , Yi-Ju and George، نويسنده , , Jinnie and Chinwangso، نويسنده , , Pawilai and Brankovic، نويسنده , , Stanko and Willson، نويسنده , , Richard C. and Litvinov، نويسنده , , Dmitri، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2013
Pages
8
From page
101
To page
108
Abstract
This paper describes synthesis of ultrathin pinhole-free insulating aluminum oxide layers for electronic device protection in corrosive liquid environments, such as phosphate buffered saline (PBS) or clinical fluids, to enable emerging biomedical applications such as biomolecular sensors. A pinhole-free 25-nm thick amorphous aluminum oxide layer has been achieved using ultra-high vacuum DC magnetron reactive sputtering of aluminum in oxygen/argon plasma followed by oxygen plasma post-processing. Deposition parameters were optimized to achieve the best corrosion protection of lithographically defined device structures. Electrochemical deposition of copper through the aluminum oxide layers was used to detect the presence (or absence) of pinholes. FTIR, XPS, and spectroscopic ellipsometry were used to characterize the material properties of the protective layers. Electrical resistance of the copper device structures protected by the aluminum oxide layers and exposed to a PBS solution was used as a metric to evaluate the long-term stability of these device structures.
Keywords
Biosensor , Corrosion , DC magnetron sputtering , Aluminum oxide , Ultrathin coating
Journal title
Surface and Coatings Technology
Serial Year
2013
Journal title
Surface and Coatings Technology
Record number
1827714
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