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首页> 外文期刊>RSC Advances >Synthesis of poly(p-phenylene) containing a rhodamine 6G derivative for the detection of Fe(III) in organic and aqueous media
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Synthesis of poly(p-phenylene) containing a rhodamine 6G derivative for the detection of Fe(III) in organic and aqueous media

机译:含有罗丹明6G衍生物的聚(em> p -亚苯基)的合成用于在有机和水性介质中检测Fe(III)

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A conjugated polymer (CP) of poly(p-phenylene) (PPP) containing rhodamine 6G (R6G) was synthesized by the Suzuki-coupling reaction, in which PPP acted as a blue-emitting energy donor and R6G acted as a ligand for Fe(III) as well as the energy acceptor for F?rster resonance energy transfer (FRET). The spirolactam ring in R6G was nonfluorescent and colorless, but became open upon exposure to Fe(III) and readily absorbed the blue emission of the PPP backbone. As the polymer was exposed to Fe(III), the blue emission from PPP decreased and the red emission of the ring-opened R6G increased via FRET. The sensing of the polymer for Fe(III) in ethanolic solution was not successful, because of negligible FRET. In the solid state of the polymer, the distance between the main chain (PPP) and the side chain (R6G) was sufficiently decreased to enable the transfer of fluorescence energy. As a result, the film sensor could detect Fe(III) in an ethanol solution and a paper-based strip sensor could detect Fe(III) in an aqueous solution with a change in the fluorescence color. The cellulosic paper of the strip provided rapid detection and improved the limit of detection. From the changes in the fluorescence of the polymer sensor in the presence of Fe(III), the film and strip sensors could detect Fe(III) in any media. Moreover, the film could be regenerated for repeated use after treatment with ethylenediaminetetraacetic acid (EDTA).
机译:通过铃木偶联反应合成了含有若丹明6G(R6G)的聚(em> p -亚苯基)(PPP)共轭聚合物(CP),其中PPP用作发蓝色光的能量供体, R6G充当Fe( III )的配体以及Fster共振能量转移(FRET)的能量受体。 R6G中的螺内酰胺环是无荧光且无色的,但在暴露于Fe( III )时变得开放,并易于吸收PPP主链的蓝色发射。随着聚合物暴露于Fe( III ),通过FRET,PPP发出的蓝光减少,开环的R6G发出的红光增加。由于FRET可以忽略不计,因此无法成功地在乙醇溶液中检测聚合物中的Fe( III )。在聚合物的固态下,主链(PPP)和侧链(R6G)之间的距离充分减小,从而可以转移荧光能量。结果,薄膜传感器可以检测乙醇溶液中的Fe( III ),而纸质条形传感器可以检测乙醇溶液中的Fe( III )。荧光颜色的变化。条的纤维素纸提供了快速检测并改善了检测限。根据存在Fe( III )时聚合物传感器的荧光变化,薄膜和条带传感器可以检测任何介质中的Fe( III )。此外,在用乙二胺四乙酸(EDTA)处理后,可再生该膜以重复使用。

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