Step by step fabrication and characterization of Au (111) exposed single crystals

A detailed procedure for the fabrication of mechanically exposed Au (111) gold single crystal surfaces is reported. The procedure produced surfaces of high quality with high reproducibility. The method presented, has modifications compared to those reported previously in literature mainly with regar...

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Main Authors: Darwish, Nadim, Eggers, P., Yang, W., Paddon-Row, M., Gooding, J.
Format: Conference Paper
Published: 2010
Online Access:http://hdl.handle.net/20.500.11937/7251
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author Darwish, Nadim
Eggers, P.
Yang, W.
Paddon-Row, M.
Gooding, J.
author_facet Darwish, Nadim
Eggers, P.
Yang, W.
Paddon-Row, M.
Gooding, J.
author_sort Darwish, Nadim
building Curtin Institutional Repository
collection Online Access
description A detailed procedure for the fabrication of mechanically exposed Au (111) gold single crystal surfaces is reported. The procedure produced surfaces of high quality with high reproducibility. The method presented, has modifications compared to those reported previously in literature mainly with regards to the surface annealing temperatures used. The quality of the surfaces was confirmed by cyclic voltammetry in 0.1M H2SO4 and scanning tunneling microscopy (STM) which showed large triangular (111) terraces of sizes of few (100nm2) in size. The quality of self assembled monolayers (SAMs) formed by 9-mercapto-1-nonanol on such surfaces was studied by impedance spectroscopy at 0V vs Ag/AgCl. The SAM was shown to behave as an ionic insulator and is well described as a Helmholtz capacitor model. These results demonstrate that the surfaces prepared by the described procedure are ideal for studies of thiolated thin films on gold surfaces, an area of interest for electrochemical and biosensing applications. © 2010 IEEE.
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spelling curtin-20.500.11937-72512017-09-13T14:39:53Z Step by step fabrication and characterization of Au (111) exposed single crystals Darwish, Nadim Eggers, P. Yang, W. Paddon-Row, M. Gooding, J. A detailed procedure for the fabrication of mechanically exposed Au (111) gold single crystal surfaces is reported. The procedure produced surfaces of high quality with high reproducibility. The method presented, has modifications compared to those reported previously in literature mainly with regards to the surface annealing temperatures used. The quality of the surfaces was confirmed by cyclic voltammetry in 0.1M H2SO4 and scanning tunneling microscopy (STM) which showed large triangular (111) terraces of sizes of few (100nm2) in size. The quality of self assembled monolayers (SAMs) formed by 9-mercapto-1-nonanol on such surfaces was studied by impedance spectroscopy at 0V vs Ag/AgCl. The SAM was shown to behave as an ionic insulator and is well described as a Helmholtz capacitor model. These results demonstrate that the surfaces prepared by the described procedure are ideal for studies of thiolated thin films on gold surfaces, an area of interest for electrochemical and biosensing applications. © 2010 IEEE. 2010 Conference Paper http://hdl.handle.net/20.500.11937/7251 10.1109/ICONN.2010.6045176 restricted
spellingShingle Darwish, Nadim
Eggers, P.
Yang, W.
Paddon-Row, M.
Gooding, J.
Step by step fabrication and characterization of Au (111) exposed single crystals
title Step by step fabrication and characterization of Au (111) exposed single crystals
title_full Step by step fabrication and characterization of Au (111) exposed single crystals
title_fullStr Step by step fabrication and characterization of Au (111) exposed single crystals
title_full_unstemmed Step by step fabrication and characterization of Au (111) exposed single crystals
title_short Step by step fabrication and characterization of Au (111) exposed single crystals
title_sort step by step fabrication and characterization of au (111) exposed single crystals
url http://hdl.handle.net/20.500.11937/7251