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首页> 外文期刊>Sensors and Actuators >Fluorescent thiazol-substituted pyrazoline nanoparticles for sensitive and highly selective sensing of explosive 2,4,6-trinitrophenol in aqueous medium
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Fluorescent thiazol-substituted pyrazoline nanoparticles for sensitive and highly selective sensing of explosive 2,4,6-trinitrophenol in aqueous medium

机译:荧光噻唑取代的吡唑啉纳米颗粒,用于对水性介质中的爆炸性2,4,6-三硝基苯酚进行敏感和高度选择性的传感

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摘要

2,4,6-Trinitrophenol (TNP), also known as picric acid is an explosive material that pose hazard to human safety and health, therefore its selective and efficient detection is extremely important. By knowing the good optical properties of pyrazoline derivatives, thiazol-substituted pyrazoline (1)-based organic fluorescent nanoparticles (N1) were employed for the highly selective sensing of TNP over a number of other nitroaromatics in aqueous medium. The quenching efficiency of N1 is proportional to the concentration of TNP over 0 μM-6 μM concentration range and it efficiently detects TNP with a detection limit of 0.002 ppm. The fast, sensitive and highly selective detection of trinitrophenol (TNP) on the basis of fluorescence quenching in contrast to other nitro-explosives and structurally-related compounds in aqueous medium by the fluorescent probe N1 is attributed to the acid-base interaction induced electron transfer process.
机译:2,4,6-三硝基苯酚(TNP),也称为苦味酸,是一种爆炸​​性物质,会对人体安全和健康构成危害,因此其选择性和有效检测极为重要。通过了解吡唑啉衍生物的良好光学性质,将噻唑取代的吡唑啉(1)基有机荧光纳米颗粒(N1)用于在水性介质中对TNP的高选择性感测。 N1的猝灭效率与TNP在0μM-6μM浓度范围内的浓度成正比,并且可以有效检测TNP,检测限为0.002 ppm。与其他硝基炸药和与水介质中结构相关的化合物相比,荧光探针N1可以在荧光猝灭的基础上快速,灵敏且高度选择性地检测三硝基苯酚(TNP),这归因于酸碱相互作用诱导的电子转移处理。

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