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Formation of a Molecular Glue Based on the Electrochemical Reduction of 4-Hydroxyphenyldiazonium for the Attachment of Thin Sol–Gel Film on Glassy Carbon
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Leora Shapiro
Published/Copyright:
September 25, 2009
The covalent attachment of a sol–gel thin film onto a glassy carbon electrode has been accomplished through the electrochemical reduction of 4-hydroxyphenyldiazonium. The latter forms a very thin layer on the glassy carbon with hydroxyl groups, through which the sol–gel is attached. We find that this “molecular glue” improves the adhesion of thin layers of sol–gel to a carbonaceous surface.
Keywords: Self-Assembled Monolayers; 4-Hydroxyphenyldiazonium; Glassy Carbon; Molecular Glue; Thin Films
Received: 2007-6-22
Accepted: 2007-7-23
Published Online: 2009-9-25
Published in Print: 2007-10-1
© Oldenbourg Wissenschaftsverlag
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Keywords for this article
Self-Assembled Monolayers;
4-Hydroxyphenyldiazonium;
Glassy Carbon;
Molecular Glue;
Thin Films
Articles in the same Issue
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- Precursor Adsorption of SbBr3 on Au(111) and Au(100) for Antimony Underpotential Deposition in a BMIBF4 Ionic Liquid – A Comparison with SbCl3
- Electroreduction of Nitrate at Copper Electrodes and Copper-PANI Composite Layers
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- A Way for Determining the Effective Three Phase Boundary Width of Solid State Electrochemical Reactions from the Primary and Secondary Current Distribution at Microelectrodes
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