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6. References<br />

1. Schreiber F.: Structure and growth of self-assembling monolayers. Prog. Sur. Sci. 2000,<br />

65, 151–257.<br />

2. Rant U.; Arinaga K.; Scherer S.; Pringsheim E.; Fujita S.; Yokoyama N., et al.: Switchable<br />

DNA interfaces for the highly sensitive detection of label-free DNA targets. Proc. Natl.<br />

Acad. Sci. U.S.A. 2007, 104, 17364–17369.<br />

3. Gebala M.; Schuhmann W.: Understanding properties of electrified interfaces as a<br />

prerequisite for label-free DNA hybridization detection. Phys. Chem. Chem. Phys. 2012,<br />

14, 14933–14942.<br />

4. Wang J.: Towards Genoelectronics. Electrochemical Biosensing of DNA Hybridization.<br />

Chem. Eur. J. 1999, 5, 1681–1685.<br />

5. Jambrec D.; Gebala M.; La Mantia F.; Schuhmann W.: Potential-Assisted DNA<br />

Immobilization as a Prerequisite for Fast and Controlled Formation of DNA Monolayers.<br />

Angew. Chem. Int. Ed. 2015, 54, 15064–15068.<br />

6. Bigelow W. C.; Pickett D. L.; Zisman W. A.: Oleophobic monolayers. Films adsorbed<br />

from solution in non-polar liquids. J. Colloid. Sci. 1946, 1, 513–538.<br />

7. Porter M. D.; Bright T. B.; Allara D. L.; Chidsey C. E. D.: Spontaneously organized<br />

molecular assemblies. 4. Structural characterization of n-alkyl thiol monolayers on gold by<br />

optical ellipsometry, infrared spectroscopy, and electrochemistry. J. Am. Chem. Soc. 1987,<br />

109, 3559–3568.<br />

8. Nuzzo R. G.; Allara D. L.: Adsorption of bifunctional organic disulfides on gold surfaces.<br />

J. Am. Chem. Soc. 1983, 105, 4481–4483.<br />

9. Daniel K Schwartz: Mechanisms and kinetics of self-assembled monolayer formation.<br />

Annu. Rev. Phys. Chem. 2001, 52, 107–137.<br />

10. Tielens F.; Santos E.: Au-S and SH Bond Formation/Breaking during the Formation of<br />

Alkanethiol SAMs on Au (111). A Theoretical Study. J. Phys. Chem. C 2010, 114, 9444–<br />

9452.<br />

11. Tamada K.; Hara M.; Sasabe H.; Knoll W.: Surface Phase Behavior of n-Alkanethiol Self-<br />

Assembled Monolayers Adsorbed on Au (111). An Atomic Force Microscope Study.<br />

Langmuir 1997, 13, 1558–1566.<br />

12. Gooding J. J.; Mearns F.; Yang W.; Liu J.: Self-Assembled Monolayers into the 21 st<br />

Century. Recent Advances and Applications. Electroanal. 2003, 15, 81–96.<br />

13. Ma F.; Lennox R. B.: Potential-Assisted Deposition of Alkanethiols on Au: Controlled<br />

Preparation of Single- and Mixed-Component SAMs. Langmuir 2000, 16, 6188–6190.<br />

14. Voicu R.; Ellis T. H.; Ju H.; Leech D.: Adsorption and Desorption of Electroactive Self-<br />

Assembled Thiolate Monolayers on Gold. Langmuir 1999, 15, 8170–8177.<br />

15. Sahli R.; Fave C.; Raouafi N.; Boujlel K.; Schöllhorn B.; Limoges B.: Switching on/off<br />

the chemisorption of thioctic-based self-assembled monolayers on gold by applying a<br />

moderate cathodic/anodic potential. Langmuir 2013, 29, 5360–5368.<br />

16. Sondag-Huethorst J. A. M.; Fokkink L. G. J.: Electrochemical Characterization of<br />

Functionalized Alkanethiol Monolayers on Gold. Langmuir 1995, 11, 2237–2241.<br />

17. Gorman C. B.; Biebuyck H. A.; Whitesides G. M.: Control of the Shape of Liquid Lenses<br />

on a Modified Gold Surface Using an Applied Electrical Potential across a Self-<br />

Assembled Monolayer. Langmuir 1995, 11, 2242–2246.<br />

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