Istanbul University, Faculty of Science, Department of Chemistry, Fatih 34126, Istanbul, Turkey.
Istanbul University-Cerrahpasa, Faculty of Engineering, Department of Chemistry, Avcilar 34320, Istanbul, Turkey.
Spectrochim Acta A Mol Biomol Spectrosc. 2022 Oct 15;279:121462. doi: 10.1016/j.saa.2022.121462. Epub 2022 Jun 2.
Determination of trace residues of 2,4,6-trinitrotoluene (TNT) is an analytical challenge as it is widely used in military, mining industry, civilian and counter-terrorism purposes. In this study, a gold nanocluster - based turn-on fluorescence sensor was developed for TNT determination. A one-pot approach was used to synthesize the fluorescent protamine - stabilized gold nanoclusters (PRT-AuNC). The proposed turn-on fluorometric sensor relies on the aggregation-induced emission enhancement mechanism. As a result of the donor-acceptor interaction between the non-fluorescent Meisenheimer anion formed from TNT and the amino groups of weakly fluorescent protamine, the PRT-AuNCs aggregate and an accompanying enhancement in fluorescence intensity is observed with a large Stokes shift (λ = 300 nm, λ = 600 nm). The fluorescence enhancement increased linearly with TNT with an LOD of 12.44 µg/L. Similar energetic materials, common soil ions and explosive camouflage materials did not affect the proposed fluorometric sensing method. TNT in artificially contaminated soil was determined, and the results were comparable to those obtained by the HPLC-DAD system. The proposed turn-on sensor is an important tool for simple, fast, rapid and sensitive TNT determination, and has a potential to be converted to a kit format.
测定痕量 2,4,6-三硝基甲苯 (TNT) 是一个分析挑战,因为它广泛用于军事、采矿业、民用和反恐用途。在本研究中,开发了一种基于金纳米簇的 TNT 测定的开启型荧光传感器。采用一锅法合成了荧光鱼精蛋白稳定的金纳米簇 (PRT-AuNC)。所提出的开启型荧光传感器依赖于聚集诱导的荧光增强机制。由于 TNT 形成的非荧光 Meisenheimer 阴离子与弱荧光鱼精蛋白的氨基之间的供体-受体相互作用,PRT-AuNC 聚集,并且观察到伴随的荧光强度增强,具有大的斯托克斯位移 (λ=300nm,λ=600nm)。荧光增强与 TNT 呈线性关系,LOD 为 12.44µg/L。类似的含能材料、常见的土壤离子和爆炸伪装材料不会影响所提出的荧光传感方法。测定了人工污染土壤中的 TNT,结果与 HPLC-DAD 系统的结果相当。所提出的开启传感器是一种用于简单、快速、快速和灵敏的 TNT 测定的重要工具,并且有可能转化为试剂盒形式。