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Highly sensitive and selective detection of trinitrotoluene using cysteine-capped gold nanoparticles

机译:半胱氨酸帽金纳米颗粒对三硝基甲苯的高灵敏度和选择性检测

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Trinitrotoluene (TNT), being an electron deficient species, can easily bind with electron rich amine groups and form a specific charge transfer Jacksona€“Meisenheimer (JM) complex. In the present study, we report the formation of a JM complex using cysteine capped gold nanoparticles in the presence of TNT. Sodium citrate is used as reducing agent for the synthesis of gold nanoparticles in an aqueous dispersion. The as synthesized gold nanoparticles are capped with L-cysteine (Au@Cys), an amino acid possessing an additional thiol functional group besides the alpha-amine. The interaction of gold nanoparticles with cysteine in the presence of TNT (AuCys@TNT) is investigated using UV-vis spectroscopy, Raman spectroscopy, FTIR spectroscopy and TEM. A possible model for cysteine binding to gold nanoparticles and the formation of the JM complex, leading to the ultra-trace detection of TNT up to 1 ppb with good reproducibility (n = 3), is also suggested.
机译:三硝基甲苯(TNT)是一种电子不足的物种,可以轻松地与富含电子的胺基结合并形成特定的电荷转移杰克森迈森海默(JM)配合物。在本研究中,我们报道了在存在TNT的情况下,使用半胱氨酸帽的金纳米颗粒形成了JM复合物。柠檬酸钠用作在水分散体中合成金纳米颗粒的还原剂。合成的金纳米颗粒被L-半胱氨酸(AuCys)覆盖,L-半胱氨酸是一种除α-胺外还具有其他硫醇官能团的氨基酸。使用紫外可见光谱,拉曼光谱,FTIR光谱和TEM研究了在TNT(AuCys @ TNT)存在下金纳米颗粒与半胱氨酸的相互作用。还提出了半胱氨酸与金纳米颗粒结合并形成JM复合物的可能模型,该模型可导致对TNT进行超痕量检测,重现性高达1 ppb(n = 3)。

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