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首页> 外文期刊>Electrochimica Acta >Impedimetry and microscopy of electrosynthetic poly(propylene imine)-co-polypyrrole conducting dendrimeric star copolymers
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Impedimetry and microscopy of electrosynthetic poly(propylene imine)-co-polypyrrole conducting dendrimeric star copolymers

机译:电合成的聚(丙烯亚胺)-共聚吡咯导电树枝状星形共聚物的阻抗和显微镜观察

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A novel generation 2 poly(propylene imine)-co-polypyrrole conducting dendrimeric star copolymer (G2PPl-co-PPy) was synthesised electrochemically by oxidative copolymerization of pyrrole and pyrrole-functionalised dendrimer (G2PPI-2Py) in LiClO_4 NMR spectra of G2PPI-2Py gave a new chemical shift at 8.1 ppm for N = CH, which confirmed the incorporation of 2-pyrrole aldehyde into the PPI dendrimer structure. Strong FT-IR bands appeared at 1630 cm~(-1) for N = C in the dendrimer moiety and at 729 cm~(-1) for C-H at the α-position of the PPy ring. Electroanalysis of the polymer films deposited on Pt electrode indicated that G2PPI-co-PPy has a lower electrochemical charge transfer resistance (R_(ct)) value compared to PPy. The decrease in R_(ct) is due to the increase in the conjugation length of the polymer as a result of the linking of the highly conjugated PPy to the PPI dendrimer. Bode impedimetric analysis indicates that Pt|G2PPI-co-PPy is a semiconductor with a maximum phase angle shift of 45.3 at 100 MHz. The scanning electron microscopy (SEM) image of G2PPI-co-PPy revealed conical PPy structures growing around a spherical core as predicted by the reaction mechanism for the formation of the dendritic star co-polymer.
机译:在G2PPI-2Py的LiClO_4 NMR光谱中,通过吡咯和吡咯官能化的树枝状大分子(G2PPI-2Py)的氧化共聚反应,电化学合成了新型的第二代聚丙烯亚胺-共聚吡咯导电树状星形共聚物(G2PP1-co-PPy)。 N = CH时在8.1 ppm处产生了新的化学位移,这证实了2-吡咯醛已掺入PPI树状聚合物结构中。对于树枝状聚合物部分中的N = C,强FT-IR谱带出现在1630 cm〜(-1)处,而在PPy环的α位上,对于C-H出现强FT-IR谱带出现在729 cm〜(-1)处。对沉积在Pt电极上的聚合物薄膜进行电分析表明,与PPy相比,G2PPI-co-PPy具有较低的电化学电荷转移电阻(R_(ct))值。 R_(ct)的降低是由于高度共轭的PPy与PPI树枝状聚合物的连接而导致的聚合物的共轭长度的增加。波特阻抗分析表明,Pt | G2PPI-co-PPy是在100 MHz时最大相角偏移为45.3的半导体。 G2PPI-co-PPy的扫描电子显微镜(SEM)图像显示,如通过形成树枝状星形共聚物的反应机理所预测的,圆锥形PPy结构在球形核周围生长。

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