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首页> 外文期刊>Dyes and Pigments >Novel phenyl-oligothiophene derivatives containing acetylenic spacers for thin film materials: Synthesis, photophysical and morphology properties
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Novel phenyl-oligothiophene derivatives containing acetylenic spacers for thin film materials: Synthesis, photophysical and morphology properties

机译:用于薄膜材料的含炔间隔基的新型苯基-低聚噻吩衍生物:合成,光物理和形态学性质

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摘要

Four novel organic semiconductor phenyl-oligothiophene derivatives containing acetylenic spacers, 5-(phenylethynyl)-2,2':5',2"-terthiophene, 5-(phenylethynyl)-2,2':5',2":5",2'"-quaterthiophene, 4-([2,2':5',2"-terthiophen]-5-ylethynyl)aniline, 4-((5'-iodo-[2,2'-bithiophen]-5-yl)ethynyl)aniline were synthesized and studied with respect to their thermal, photophysical, electrochemical and morphological properties. TGA and DSC results show all the oligomers have good thermal stability. Electrochemical measurements suggest the compounds can be used as photovoltaic materials. UV-vis spectra confirm all the molecules adopt close side-to-side packing, indicating H-aggregation. 4-([2,2':5',2"-Terthiophen]-5-ylethynyl)aniline exhibits excellent fluorescence properties when applied in an optoelectric field. XRD analysis indicates that the four compounds have a high degree of lamellar ordering and crystallinity. Film morphology properties reveal a clearly single-crystalline monoclinic morphology with lamellae parallel to the substrate, exhibiting that adjacent molecules have a strong intermolecular interaction. The potential liquid crystalline property is illustrated by DSC, XRD and polarization optical microscopy. These properties demonstrate that these oligomers could be promising candidates for the organic thin film materials and photovoltaic devices.
机译:四种含有炔间隔基,5-(苯基乙炔基)-2,2':5',2“-对噻吩,5-(苯基乙炔基)-2,2':5',2”:5“的新型有机半导体苯基-低聚噻吩衍生物,2'“-四噻吩,4-([[2,2':5',2”-噻吩] -5-基乙炔基)苯胺,4-((5'-碘-[2,2'-联噻吩] -5合成并研究了它们之间的热,光物理,电化学和形态学性质,TGA和DSC结果表明所有低聚物均具有良好的热稳定性,电化学测量表明该化合物可用作光伏材料。可见光谱证实所有分子均采用紧密的并排堆积,表明存在H聚集。4-([2,2':5',2“ -Terthiophen] -5-ylethynyl)苯胺在荧光光谱中应用时表现出出色的荧光性质光电场。 XRD分析表明这四种化合物具有高度的层状有序性和结晶性。膜的形态学性质揭示了明显的单晶单斜晶形态,其薄片平行于底物,表明相邻的分子具有很强的分子间相互作用。潜在的液晶性质通过DSC,XRD和偏振光学显微镜进行说明。这些性质表明,这些低聚物可能是有机薄膜材料和光伏器件的有前途的候选物。

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