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首页> 外文期刊>Quimica nova >SPECTROSCOPIC CHARACTERIZATION OF PEDOT:PSS CONDUCTING POLYMER BY RESONANCE RAMAN AND SERRS SPECTROSCOPIES
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SPECTROSCOPIC CHARACTERIZATION OF PEDOT:PSS CONDUCTING POLYMER BY RESONANCE RAMAN AND SERRS SPECTROSCOPIES

机译:PEDOT的光谱表征:PSS通过共振拉曼和SERRS光谱传导聚合物

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Poly(3,4-ethylenedioxythiophene)-poly(styrenesulfonate) (PEDOT:PSS) synthesis was monitored by resonance Raman (RR) and surface-enhanced resonance Raman scattering (SERRS) spectroscopies and both the oxidation of the polymer and the effects of chain length were assessed by vibrational analysis. It was supported by theoretical models of oligomers, with charge ranging from 0 to +6 and size varying from 2 to 16 3,4-ethylenedioxythiophene (EDOT) repeat units, described through density functional theory. The symmetric CαCβ stretching band observed at ca. 1426 cm-1 shifts to higher wavenumbers for reaction times varying from 2 to 9 hours and stabilizes at intermediate wavenumbers for longer times. The former behavior was ascribed to the increase of concentration of oxidized species, which was corroborated by calculated wavenumbers for oligomer models when their charges changed from neutral to +6. The behavior observed for longer reaction times was associated with the growth of chains. It was also observed through SERRS spectroscopy that small chains of the polymer, obtained in the early time of the synthesis, adsorbs on gold nanoparticle surfaces through interactions via oxidized residues. In this way, RR and SERRS spectroscopies were valuable tools to follow the synthetic procedures of PEDOT:PSS, allowing the determination of the structural evolution of the polymer.
机译:通过共振拉曼(RR)和表面增强的共振拉曼散射(SERRS)光谱和聚合物氧化和链条的氧化和链条的氧化和链条的氧化和链条的氧化和链条的氧化和链条通过振动分析评估长度。它受到低聚物的理论模型的支持,电荷范围为0至+6,尺寸从2-16 3,4-亚乙二氧基噻吩(Edot)重复单元,通过密度函数理论描述。在CA观察到的对称CαCβ伸展带。 1426cm-1向更高的波数转移到更高的波数,反应时间从2〜9小时变化,并在中间波数稳定到更长的时间。前一种行为归因于氧化物质的浓度的增加,当它们的电荷从中性变化到+6时,通过计算的波兰管被用于低聚物型号的计算。观察到更长反应时间的行为与链条的生长有关。还通过SERRS光谱观察到聚合物的小链子,在合成的早期获得的小链,通过氧化残基相互作用在金纳米粒子表面上的吸附。通过这种方式,RR和SERRS光谱是有价值的工具,以遵循PEDOT:PSS的合成方法,允许确定聚合物的结构演变。

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