Article ID Journal Published Year Pages File Type
1244140 Talanta 2015 7 Pages PDF
Abstract

•Rapid formation of a coloured cysteamine-TNT Meisenheimer complex within 10 min.•Lable free SERS detection of TNT.•Low quantification limit of 22.7 ng/L of TNT.•High slectivity towrds TNT over 2,4-DNT and picric acid.•The new nanosensor satisfies the practical requirements for the screening of TNT in real life samples.

We report rapid and ultra-sensitive detection system for 2,4,6-trinitrotoluene (TNT) using unmodified gold nanoparticles and surface-enhanced Raman spectroscopy (SERS). First, Meisenheimer complex has been formed in aqueous solution between TNT and cysteamine in less than 15 min of mixing. The complex formation is confirmed by the development of a pink colour and a new UV–vis absorption band around 520 nm. Second, the developed Meisenheimer complex is spontaneously self-assembled onto unmodified gold nanoparticles through a stable Au–S bond between the cysteamine moiety and the gold surface. The developed mono layer of cysteamine-TNT is then screened by SERS to detect and quantify TNT. Our experimental results demonstrate that the SERS-based assay provide an ultra-sensitive approach for the detection of TNT down to 22.7 ng/L. The unambiguous fingerprint identification of TNT by SERS represents a key advantage for our proposed method. The new method provides high selectivity towards TNT over 2,4 DNT and picric acid. Therefore it satisfies the practical requirements for the rapid screening of TNT in real life samples where the interim 24-h average allowable concentration of TNT in waste water is 0.04 mg/L.

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Related Topics
Physical Sciences and Engineering Chemistry Analytical Chemistry
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