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In situ monitoring of polymer redox states by resonance μRaman spectroscopy and its applications in polymer modified microfluidic channels

机译:通过共振拉曼光谱原位监测聚合物氧化还原状态及其在聚合物修饰的微流体通道中的应用

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We report the application of multi-wavelength resonance Raman (rR) spectroscopy for the characterisation of vinyl-bridged polysexithiophene films formed by electropolymerisation on gold electrodes. Resonance Raman spectroscopy of the neutral, polaronic and bipolaronic states of the polymer were determined by in situ μRaman spectroelectrochemistry. In particular the differences in the UV/Vis-NIR absorption spectra of the neutral, monopolaronic and bipolaronic states of the polymer allow for characterising the redox state of the polymer films in PDMS based microfluidic channels. The information obtained in this way allows for determination of the optimum film thickness required for achieving full electrochemical switching between neutral and charged states, which is important in their use in switching surface properties. The approach taken allows for direct analysis of polymer films formed within microchannels...
机译:我们报告了多波长共振拉曼(rR)光谱在表征金电极上通过电聚合形成的乙烯基桥联聚噻吩噻吩薄膜的应用。聚合物的中性,极化和双极化状态的共振拉曼光谱通过原位拉曼光谱电化学测定。特别地,聚合物的中性,单极化和双极化状态的UV / Vis-NIR吸收光谱的差异允许表征基于PDMS的微流体通道中的聚合物膜的氧化还原状态。以这种方式获得的信息允许确定实现中性和带电状态之间的完全电化学转换所需的最佳膜厚度,这对于它们在转换表面性能中的使用很重要。所采用的方法可以直接分析微通道内形成的聚合物薄膜。

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