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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Post-polymerization functionalization of poly(3,4-propylenedioxythiophene) (PProDOT) via thiol-ene 'click'' chemistry
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Post-polymerization functionalization of poly(3,4-propylenedioxythiophene) (PProDOT) via thiol-ene 'click'' chemistry

机译:经由硫醇-烯“点击”化学反应的聚(3,4-丙烯二氧基噻吩)(PProDOT)的后聚合功能化

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摘要

The surface functionalization of conjugated polymers such as the poly(alkoxythiophenes) poly(3,4-ethylenedioxythiophene) (PEDOT) and poly(3,4-propylenedioxythiophene) (PProDOT) provides a potential means for systematically tailoring their physical properties. We previously reported the synthesis of an alkene-functionalized 3,4-propylenedioxy-thiophene (ProDOT) derivative that could be readily modified through thiol-ene "click'' chemistry. Here, we investigated the post-polymerization modification of PProDOT surfaces by using a dialkene functionalized variant (ProDOT-diene). The chemical structure of the ProDOT-diene monomer was confirmed by Nuclear Magnetic Resonance (NMR) and Fourier Transform Infrared spectroscopy (FTIR). The ProDOT-diene monomer was either chemically or electrochemically polymerized into the PProDOT-diene polymer, and then subsequently modified with alkyl, PEG, or ferrocene moieties via radical-based thiol-ene chemistry. We found that the normally insoluble PProDOT-diene could be converted into a soluble derivative by grafting alkyl groups onto the polymer chains after chemical polymerization. When electrochemically deposited on indiumtin oxide (ITO) glass electrodes, the conductivity, electroactivity and contact angles of the modified PProDOT-diene films could be tuned over a broad range. Scanning Electron Microscopy (SEM) revealed that post-polymerization modification did not significantly alter the surface morphology of the PProDOT-diene films. Overall, this method allows for efficient, facile tuning of the surface chemistry of poly(alkylthiophene) films, making it possible to tailor properties such as conductivity and wettability for different applications.
机译:诸如聚(烷氧基噻吩),聚(3,4-乙撑二氧噻吩)(PEDOT)和聚(3,4-丙二氧噻吩)(PProDOT)等共轭聚合物的表面官能化为系统地调整其物理性能提供了一种可能的手段。我们先前曾报道过可以通过硫醇-烯“点击”化学反应轻松改性的烯烃官能化3,4-丙二氧基-噻吩(ProDOT)衍生物的合成,在此我们研究了PProDOT表面聚合后的改​​性通过核磁共振(NMR)和傅立叶变换红外光谱(FTIR)确认了ProDOT-二烯单体的化学结构,并通过化学或电化学方法将ProDOT-二烯单体聚合成PProDOT-二烯聚合物,然后通过基于自由基的硫醇-烯化学方法用烷基,PEG或二茂铁部分进行改性,我们发现通常不溶的PProDOT-二烯可以通过将烷基接枝到聚合物链上而转化为可溶的衍生物化学聚合后,当电化学沉积在氧化铟锡(ITO)玻璃电极上时,电导率,电活性和接触角改性后的PProDOT-二烯薄膜的可调节范围很广。扫描电子显微镜(SEM)显示,聚合后的修饰不会显着改变PProDOT-二烯薄膜的表面形态。总的来说,该方法允许对聚(烷基噻吩)薄膜的表面化学进行有效,简便的调节,从而有可能针对不同应用调整诸如电导率和润湿性之类的特性。

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