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Insight into the interactions between pyrene and polystyrene for efficient quenching nitroaromatic explosives

机译:深入了解芘和聚苯乙烯之间的相互作用,以有效淬火硝基芳族炸药

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摘要

A pyrene (Py) in polystyrene (PS) matrix shows rapid fluorescence quenching in the presence of 2,4-dinitrotoluene (2,4-DNT). The fluorescence quenching does not occur in the absence of the PS matrix, implying that the molecular architecture of the PS chain is critical. However, the function of the PS matrix is not well understood. Here, we investigate various Py/PS binary thin films containing PS of diverse molecular architecture (i.e., linear, centipede and 4-arm star) and molecular weight (i.e., 2.5, 35, 192, 350 and 900 kDa) to understand the effects of these molecular descriptors on the fluorescence quenching. The findings suggest that the electron-rich nature of Py/PS facilitates the photoinduced electron transfer from Py/PS to the electron-deficient 2,4-DNT, resulting in effective quenching of Py excimers. Moreover, cyclic voltammetry (CV) and UV-vis absorption verified that PS reduces the lowest unoccupied molecular orbital level of Py, promoting the Py excimer quenching efficiency in the presence of nitroaromatic molecules. The quenching process is found to be independent of molecular architecture and molecular weight, suggesting that energy migration along the PS backbone may not be the key mechanism. This simple and concise concept provide the insight into the selection for highly-efficient sensing materials.
机译:聚苯乙烯(PS)基质中的芘(PY)显示出在2,4-二硝基甲橡胶(2,4-DNT)存在下快速荧光猝灭。在没有PS矩阵的情况下,荧光猝灭不会发生,这意味着PS链的分子结构是至关重要的。然而,PS矩阵的功能尚不清楚。在这里,我们研究了包含不同分子结构(即线性,蜈蚣和4臂星形)和分子量(即2.5,35,192,350和900kDa)的各种Py / PS二进制薄膜以了解效果这些分子描述符对荧光猝灭。研究结果表明,Py / PE的富含电子性质有助于从py / ps从缺光到电子缺陷的2,4-dnt,导致Py准分子的有效猝灭。此外,循环伏安法(CV)和UV-Vis吸收验证了PS降低了最低的未占用的PY水平,促进硝基芳族分子存在下的PY准分子猝灭效率。发现淬火过程与分子结构和分子量无关,表明沿PS骨架的能量迁移可能不是关键机制。这种简单简洁的概念提供了对高效传感材料的选择的洞察力。

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