Department of Chemical Technology and Pharmaceuticals, Faculty of Pharmacy, Collegium Medicum, Nicolaus Copernicus University, Jurasza 2, 85-089 Bydgoszcz, Poland.
Institute of Physics, Kazimierz Wielki University, Powstańców Wielkopolskich 2, 85-090 Bydgoszcz, Poland.
Int J Mol Sci. 2022 May 21;23(10):5767. doi: 10.3390/ijms23105767.
The paper presents synthesis and characterization of nine new thiazolyl-(phenyldiazenyl)-2-chromen-2-one dyes. The impact of substituent structure in thiazole ring in the synthesized azocoumarin derivatives on electrochemical properties, photoisomerization process and photovoltaic response was examined. The dyes were electrochemically active and undergo reduction and oxidation processes. They showed low electrochemically estimated energy band gap in the range of 1.71-2.13 eV. Photoisomerization process of the synthesized molecules was studied in various solvents such as ethanol, chloroform and ,-dimethylformamide (DMF) upon the UV illumination. It was found that novel azodyes showed reversible -- isomerization and exhibited long thermal back to the trans form, that was even 7 days in DMF. Selected azocoumarin were molecularly dispersed in polystyrene for preparation of guest-host azopolymer systems to study the - thermal isomerization of obtained dyes in solid state. The photovoltaic activity of the azochromophores was tested in bulk-heterojunction solar cells. They acting as weak donors in device with structure ITO/PEDOT:PSS/dye:PC70BM/Al. No photovoltaic response of cells with azocoumarin derivatives bearing 4-fluorobenzene, 3,4-dichlorobenzene, or 4-(1-adamantyl) unit was found. Additionally, dye which showed the best activity was examined in three-component solar cells ITO/PEDOT:PSS/PTB7:PC70BM:dye/PFN/Al.
本文介绍了九种新型噻唑基-(苯基亚氨基)-2-色满-2-酮染料的合成与表征。研究了噻唑环中取代基结构对合成偶氮化合物衍生物的电化学性质、光致异构化过程和光伏响应的影响。这些染料具有电化学活性,经历还原和氧化过程。它们表现出低的电化学估计能带隙在 1.71-2.13 eV 范围内。在紫外光照射下,研究了合成分子在乙醇、氯仿和 -二甲基甲酰胺(DMF)等不同溶剂中的光致异构化过程。结果发现,新型偶氮染料表现出可逆的 --异构化,并表现出长的热回到反式构象,在 DMF 中甚至可达 7 天。选择的偶氮染料在聚苯乙烯中进行分子分散,制备客体-主体偶氮聚合物体系,以研究所得染料在固态中的 -热异构化。在体异质结太阳能电池中测试了偶氮发色团的光伏活性。它们在结构为 ITO/PEDOT:PSS/染料:PC70BM/Al 的器件中作为弱供体起作用。然而,对于含有 4-氟苯、3,4-二氯苯或 4-(1-金刚烷基)单元的偶氮衍生物的电池,没有发现光伏响应。此外,还研究了在三组分太阳能电池 ITO/PEDOT:PSS/PTB7:PC70BM:染料/PFN/Al 中具有最佳活性的染料。