State Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, PR China.
Anal Methods. 2021 Feb 14;13(6):825-831. doi: 10.1039/d0ay01945c. Epub 2021 Jan 27.
A simple and sensitive fluorometric method is developed utilizing aggregation-induced emission probe based silica nanoparticles for the detection of nitroaromatic explosives. A positively charged tetraphenylethene based probe (TPE-C2-2+) is doped into silica nanoparticles exploiting electrostatic interactions to produce TPE-SiO nanoparticles with a uniform particle size. The TPE-SiO nanoparticles exhibit strong fluorescence emission due to the aggregation-induced emission (AIE) effect of the doped TPE probe. The fluorescence emission of TPE-SiO offers quantitative and sensitive response to picric acid (PA), 2,4-dinitrotoluene (DNT) and 2,4,6-trinitrotoluene (TNT) which are used as model examples of nitroaromatic compounds. The fluorescence spectroscopy results show that the fluorescence emission of TPE-SiO was greatly quenched in the presence of the electron-poor nitroaromatic compounds due to the inner filter effect (IFE) and possibly the contact quenching mechanism. TPE-SiO nanoparticles show better sensitivity towards PA and could detect PA down to 0.01 μM with a linear detection range of 0.1-50 μM. The increased chemical stability, efficient high sensitivity and simple synthesis of the TPE-SiO nanoparticles demonstrate that they can be used as an excellent fluorescent probe for a wide range of electron-poor compounds, i.e. nitroaromatic compounds. Interference studies show that common interfering species with nitroexplosives such as acids, bases, volatile organic compounds, and salt solutions have a negligible effect during the sensing process.
一种简单灵敏的荧光方法,利用基于聚集诱导发光探针的硅纳米粒子检测硝基芳香族爆炸物。一种带正电荷的四苯乙烯基探针(TPE-C2-2+)利用静电相互作用掺杂到硅纳米粒子中,以产生具有均匀粒径的 TPE-SiO 纳米粒子。TPE-SiO 纳米粒子由于掺杂的 TPE 探针的聚集诱导发光(AIE)效应而表现出强荧光发射。TPE-SiO 的荧光发射对苦味酸(PA)、2,4-二硝基甲苯(DNT)和 2,4,6-三硝基甲苯(TNT)具有定量和敏感的响应,它们被用作硝基芳香族化合物的模型示例。荧光光谱结果表明,由于内滤效应(IFE)和可能的接触猝灭机制,在存在电子缺乏的硝基芳香族化合物的情况下,TPE-SiO 的荧光发射被大大猝灭。TPE-SiO 纳米粒子对 PA 具有更好的灵敏度,可检测到低至 0.01 μM 的 PA,线性检测范围为 0.1-50 μM。TPE-SiO 纳米粒子具有更高的化学稳定性、高效高灵敏度和简单的合成方法,证明它们可作为广泛的电子缺乏化合物(即硝基芳香族化合物)的优异荧光探针。干扰研究表明,在传感过程中,与硝基爆炸物共存的常见干扰物质,如酸、碱、挥发性有机化合物和盐溶液,几乎没有影响。