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Gold-nanoparticle-based graphite furnace atomic absorption spectrometry amplification and magnetic separation method for sensitive detection of mercuric ions
Journal article   Peer reviewed

Gold-nanoparticle-based graphite furnace atomic absorption spectrometry amplification and magnetic separation method for sensitive detection of mercuric ions

I-Hsiang Hsu, Tun-Chieh Hsu and Yuh-Chang Sun
Biosensors and Bioelectronics, Vol.26(11), pp.4605-4609
15/07/2011

Abstract

AuNP-based amplification GFAAS Mercury
We have developed a sensitive gold-nanoparticle-based (AuNP-based) graphite furnace atomic absorption spectrometry (GFAAS) amplification and magnetic separation method for the detection of mercuric ions (Hg 2+ ). The assay relies on (i) a sandwich-type structure containing two thymine-thymine (T-T) mismatches for selectively recognizing Hg 2+ ions; (ii) magnetic beads for homogeneous separation; and (iii) AuNP-based GFAAS amplification detection. The limit of detection (LOD) of this assay is 0.45nM (0.09μgL -1 ) - one order of magnitude lower than the United States Environmental Protection Agency (US EPA) limit for Hg 2+ in drinking water. Furthermore, because a shorter hybridization step and a simpler AuNP-based GFAAS amplification detection were employed, a faster analytical run time allowing us to analyze a batch of 24 samples within 0.5h. We demonstrated the feasibility of the developed approach for the determination of Hg 2+ in urine and aqueous environmental samples. © 2011 Elsevier B.V.

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