International Journal

High Sensitive, Direct, and Label-Free Technique for Hg2+ Detection by Using Kelvin Probe Force Microscopy
Author
C. Park, K. Jang, S. Lee, J. You, S. Lee, H. Ha, K. Yun, J. Kim, Howon Lee, J. Park, S. Na*
Journal
Nanotechnology
Vol
26
Page
305501
Year
2015
File
2015_Nanotechnology.pdf (1.3M) 2회 다운로드 DATE : 2021-11-19 17:50:44

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For several decades, various nanomaterials have been used in a wide range of industrial fields, research areas, and commercial products. Among many nanomaterials, nano-sized mercury materials are one of the most widely used nanomaterials in real life. However, due to the high toxicity of Hg2+, it is imperative to develop an effective and practical detection method for Hg2+ to protect human health and environment. In this study, a highly sensitive, label-free method of detecting Hg2+ that requires only a single drop of solution was developed. The detection mechanism is based on the different surface potential arising from Hg2+ binding to mismatched thymine–thymine sequences, creating a very stable base pair. The surface potential is measured with Kelvin probe force microscopy (KPFM) to a molecular resolution. The developed method is capable of detecting 2 fmol of Hg2+, which is 500 times more sensitive than previously reported techniques. Moreover, our method can selectively detect Hg2+ and can also be applied to tap water and river water. This KPFM-based Hg2+ detection method can be used as an early detection technique for practical applications.