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Synthesis and characterization of push-pull bithiophene and thieno [3,2-b]thiophene derivatives bearing an ethyne linker as sensitizers for dye-sensitized solar cells

机译:推挽联噻吩和噻吩[3,2-b]噻吩衍生物的合成和表征,带有乙炔连接基作为染料敏化太阳能电池的敏化剂

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Five push-pull heterocyclic dyes 4-7, and 9 were synthesized and characterized in order to study the variations in the optical, electronic and photovoltaic properties induced by structural modifications, i.e. different spacer units and anchoring groups. The final push-pull conjugated dyes 6-7 and 9 are formed by a N,N-dimethylaniline donor moiety conjugated with bithiophene, ethynyl-bithiophene or ethynyl-thieno[3,2-b]thiophene spacers and cyanoacetic acid or rhodanine-3-acetic acid as anchoring group. The synthesis of the precursor aldehydes 4-5 was accomplished through a Sonogashira coupling, on the other hand, compound 8 was prepared by Suzuki coupling. Knoevenagel condensation of aldehydes 4, 5 and 8 with cyanoacetic acid or rhodamine-3-acetic acid afforded the final push-pull dyes 6, 7 and 9. Information on conformation, electronic structure and electron distribution was obtained by DFT and TDDFT calculations. This multidisciplinary study regarding the evaluation of the optical, redox and photovoltaic properties of the dyes reveals that compound 7, bearing an ethynyl-bithiophene spacer conjugated with a cyanoacetic acid anchoring group, has the highest conversion efficiency (3.51%) as dye sensitizer in nanocrystalline TiO_2 solar cells. Co-adsorption studies were also performed for dyes 6-7 with N719 as co-adsorbent, and this enhanced dye efficiencies by 33-45%. The best cell performance was obtained by co-adsorbing N719 and dye 7 (75/25 vol%) with 4.66% efficiency.
机译:合成并表征了五种推挽式杂环染料4-7和9,以研究由结构修饰(即不同的间隔单元和锚定基团)引起的光学,电子和光伏性质的变化。最终的推挽共轭染料6-7和9由与联噻吩,乙炔基-联噻吩或乙炔基-噻吩并[3,2-b]噻吩间隔基和氰基乙酸或若丹宁-3共轭的N,N-二甲基苯胺供体部分形成-乙酸作为锚定基团。通过Sonogashira偶联完成前体醛4-5的合成,另一方面,通过Suzuki偶联制备化合物8。醛4、5和8与氰基乙酸或若丹明3-乙酸的Knoevenagel缩合提供最终的推挽式染料6、7和9。通过DFT和TDDFT计算获得有关构象,电子结构和电子分布的信息。这项关于染料的光学,氧化还原和光伏性质评估的多学科研究表明,带有乙炔基-联噻吩间隔基与氰基乙酸锚定基团共轭的化合物7在纳米晶体中作为染料敏化剂的转化效率最高(3.51%) TiO_2太阳能电池。还使用N719作为共吸附剂对6-7号染料进行了共吸附研究,该方法将染料效率提高了33-45%。通过以4.66%的效率共吸附N719和染料7(75/25 vol%)获得最佳的电池性能。

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