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首页> 外文期刊>Sensors >Electrochemical Interrogation of G3-Poly(propylene thiophenoimine) Dendritic Star Polymer in Phenanthrene Sensing
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Electrochemical Interrogation of G3-Poly(propylene thiophenoimine) Dendritic Star Polymer in Phenanthrene Sensing

机译:菲传感中G3-聚(丙烯硫代苯亚胺)树突状星形聚合物的电化学询问

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A novel dendritic star-copolymer, generation 3 poly(propylene thiophenoimine) (G3PPT)-co-poly(3-hexylthiophene) (P3HT) star co-polymer on gold electrode (i.e., Au|G3PPT-co-P3HT) was used as a sensor system for the determination of phenanthrene (PHE). The G3PPT-co-P3HT star co-polymer was synthesized via in situ electrochemical co-polymerization of generation 3 poly (propylene thiophenoimine) and poly (3-hexylthiophene) on gold electrode. 1HNMR spectroscopy was used to determine the regioregularity of the polymer composites, whereas Fourier transform infrared spectroscopy and scanning electron microscopy were used to study their structural and morphological properties. Au|G3PPT-co-P3HT in the absence of PHE, exhibited reversible electrochemistry attributable to the oligo (thiophene) ‘pendants’ of the dendrimer. PHE produced an increase in the voltammetric signals (anodic currents) due to its oxidation on the dendritic material to produce catalytic current, thereby suggesting the suitability of the Au|G3PPT-co-P3HT electrode as a PHE sensor. The electrocatalysis of PHE was made possible by the rigid and planar oligo-P3HT species (formed upon the oxidation of the oligo (thiophene) pendants of the star-copolymer), which allowed the efficient capture (binding) and detection (electrocatalytic oxidation) of PHE molecules.
机译:在金电极上使用了一种新型的树枝状星形共聚物,第3代聚(丙烯噻吩亚胺)(G3PPT)-聚(3-己基噻吩)(P3HT)星形共聚物(即Au | G3PPT-co-P3HT)用于测定菲(PHE)的传感器系统。 G3PPT-共-P3HT星型共聚物是通过在金电极上原位电化学生成第3代聚(亚丙基噻吩亚胺)和聚(3-己基噻吩)而合成的。 1HNMR光谱用于确定聚合物复合材料的区域规则性,而傅立叶变换红外光谱和扫描电子显微镜则用于研究其结构和形态特性。在不存在PHE的情况下,Au | G3PPT-co-P3HT表现出可逆的电化学反应,这归因于树枝状大分子的寡聚体(“噻吩”)。由于PHE在树状材料上被氧化以产生催化电流,因此PHE产生了伏安信号(阳极电流)的增加,从而表明Au | G3PPT-co-P3HT电极适合用作PHE传感器。刚性和平面的寡聚P3HT物种(由星形共聚物的寡聚(噻吩)侧链氧化而形成)使PHE的电催化成为可能,从而可以有效捕获(结合)并检测(电催化氧化) PHE分子。

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