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On the trade-off between processability and opto-electronic properties of single wall carbon nanotube derivatives in thin film heterojunctions

机译:薄膜异质结中单壁碳纳米管衍生物的可加工性与光电性能之间的权衡

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摘要

A flow functionalization route has been employed to derivatize single wall carbon nanotubes (SWCNTs) by thienylphenyl groups. The SWCNT derivatives in the most soluble fraction have been characterized by thermogravimetric analysis, DLS analysis, DFT calculations, and UV-vis-NIR, microRaman and IR spectroscopies to study the degree of functionalization, the concentration of SWCNTs in solution, the dimension of the aggregates in solutions, the density of defects, and the presence of the thienylphenyl groups. Thin-film heterojunctions made of SWCNT derivatives and poly(3-hexylthiophene) (P3HT) have been prepared by various methods employing the Langmuir-Schaefer technique, spin-coating and thermal annealing processes. By comparing the batch and the flow functionalizations, a trade-off between solubility, processability and the thin-film opto-electronic properties has been found as a result of the degree of functionalization.
机译:已采用流动功能化路线通过噻吩基苯基将单壁碳纳米管(SWCNT)衍生化。通过热重分析,DLS分析,DFT计算以及UV-vis-NIR,microRaman和IR光谱对最易溶级分中的SWCNT衍生物进行了表征,以研究官能化程度,溶液中SWCNT的浓度,在溶液中聚集,缺陷的密度和噻吩基苯基的存在。由SWCNT衍生物和聚(3-己基噻吩)(P3HT)制成的薄膜异质结已通过各种方法采用Langmuir-Schaefer技术,旋涂和热退火工艺制备。通过将批料和流动功能化进行比较,由于功能化的程度,已经发现溶解度,可加工性和薄膜光电性能之间的权衡。

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