Quantifying thiol-gold interactions towards the efficient strength control

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Abstract

The strength of the thiol-gold interactions provides the basis to fabricate robust self-assembled monolayers for diverse applications. Investigation on the stability of thiol-gold interactions has thus become a hot topic. Here we use atomic force microscopy to quantify the stability of individual thiol-gold contacts formed both by isolated single thiols and in self-assembled monolayers on gold surface. Our results show that the oxidized gold surface can enhance greatly the stability of gold-thiol contacts. In addition, the shift of binding modes from a coordinate bond to a covalent bond with the change in environmental pH and interaction time has been observed experimentally. Furthermore, isolated thiol-gold contact is found to be more stable than that in self-assembled monolayers. Our findings revealed mechanisms to control the strength of thiol-gold contacts and will help guide the design of thiol-gold contacts for a variety of practical applications. © 2014 Macmillan Publishers Limited. All rights reserved.

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APA

Xue, Y., Li, X., Li, H., & Zhang, W. (2014). Quantifying thiol-gold interactions towards the efficient strength control. Nature Communications, 5. https://doi.org/10.1038/ncomms5348

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