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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Cationic Imidazolium Polythiophenes: Effects of Imidazolium-Methylation on Solution Concentration-Driven Aggregation and Surface Free Energy of Films Processed from Solvents with Different Polarity
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Cationic Imidazolium Polythiophenes: Effects of Imidazolium-Methylation on Solution Concentration-Driven Aggregation and Surface Free Energy of Films Processed from Solvents with Different Polarity

机译:阳离子咪唑鎓多噻吩:咪唑鎓 - 甲基化对溶液溶液浓度驱动的聚集和表面自由能量的不同极性溶剂加工溶剂

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摘要

Cationic imidazolium-functionalized polythiophenes with single- or double-methylation of the imidazolium ring were used to study the impact of imidazolium-methylation on (i) the solution concentration-driven aggregation in the presence of paramagnetic probes with different ionic and hydrophobic constituents and (ii) their surface free energy (SFE) as spin-coated films deposited on plasma-activated glass. Electron paramagnetic resonance spectroscopy shows that the differences in film structuration between the polymers with different methylations originate from the early stages of aggregation. In the solid state, higher degree of imidazolium-methylation generates smaller values of total SFE, gamma S, (by around 2 mN/m), which could be relevant in optoelectronic applications. Methylation also causes a decrease in the polar contribution of gamma S (gamma Sp), suggesting that methylation decreases the polar nature of the imidazolium ring, probably due to the blocking of its H-bonding capabilities. The values of gamma S obtained in the present work are similar to the values obtained for doped films of neutral conjugated polymers, such as polyaniline, poly(3-hexylthiophene), and polypyrrole. However, imidazolium-polythiophenes generate films with a larger predominance of the dispersive component of gamma S (gamma Sd), probably due to the motion restriction in the ionic functionalities in a conjugated polyelectrolyte, in comparison to regular dopants. The presence of 1,4-dioxane increases gamma Sp, especially, in the polymer with larger imidazolium-methylation (and therefore unable to interact through H-bonding), probably by a decrease of the imidazolium-glass interactions. Singly-methylated imidazolium polythiophenes have been applied as electrode selective ("buffer") interlayers in conventional and inverted organic solar cells, improving their performance. However, clear structure-function guidelines are still needed for designing high-performance polythiophene-based interlayer materials. Therefore, the information reported in this work could be useful for such applications.
机译:与咪唑鎓环的单或双甲基咪唑鎓阳离子官能化的聚噻吩被用来研究咪唑基甲基化对(i)所述溶液浓度驱动聚集在具有不同离子和疏水成分和顺磁探针的存在的影响( ⅱ)它们的表面自由能(SFE),其沉积在等离子体活化玻璃旋涂膜。电子顺磁共振光谱表明,用不同的甲基化的聚合物之间在膜结构化的差异从聚集的早期阶段发起。在固态下,更高程度的咪唑鎓甲基化生成(由约2 mN / m的)总SFE,γS,的较小值,这可能是在光电应用相关的。甲基化也导致伽马S(伽马SP)的极性贡献的减少,这表明甲基化降低了咪唑鎓环的极性性质,可能是由于它的氢键能力阻挡。 S IN本工作所得的γ的值类似于对于中性共轭聚合物的掺杂膜,诸如聚苯胺,聚(3-己基噻吩),聚吡咯和获得的值。然而,咪唑鎓聚噻吩产生,可能是由于在共轭聚电解质的离子官能的运动限制,相较于常规的掺杂剂用γS(伽马SD)的分散分量的较大优势的薄膜。 1,4-二恶烷的存在增加伽马SP,特别是,具有较大的咪唑鎓甲基化(并因此无法通过氢键相互作用)在聚合物中,可能是由咪唑鎓系玻璃的相互作用的降低。单独使用甲基化咪唑鎓聚噻吩已应用于作为电极选择性(“缓冲液”)在传统的和倒置的有机太阳能电池的中间层,提高它们的性能。基于聚噻吩的中间层材料。然而,结构清晰,功能准则仍然需要设计高性能。因此,在这项工作报告的信息可能是这样的应用非常有用。

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