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A Photoelectrochemical Study of Bioinspired 2-Styryl-1-Benzopyrylium Cations on TiO2 Nanoparticle Layer for Application in Dye-Sensitized Solar Cells

机译:TiO2纳米粒子层上生物启发的2-苯乙烯-1-苄基吡啶阳离子的光电化学研究用于染料敏化太阳能电池

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摘要

In the present work, five 2-styryl-1-benzopyrylium salts and their relative self-assembly processes towards TiO nanocrystalline layers were evaluated as photosensitizers in dye-sensitized solar cells (DSSCs). Integration of these 2-styryl-1-benzopyrylium salts with the semiconductor allow for the performance of highly specific functions suitable for smart applications in material science. Spectroscopic and photoelectrochemical measurements conducted on these five bio-inspired dyes, in solution and upon adsorption onto titanium dioxide films, allowed detailed discussion of the anchoring ability of the different donor groups decorating the 2-styryl-1-benzopyrylium core and have demonstrated their ability as photosensitizers. Our results suggest that the introduction of a dimethylamino group in position 4′ of the 2-styryl-1-benzopyrylium skeleton can alter the conjugation of the molecule leading to larger absorption in the visible region and a stronger electron injection of the dye into the conduction band of TiO . Moreover, our experimental data have been supported by theoretical calculations with the aim to study the energy of the excited states of the five compounds. In this specific case, the simulations reported contributed to better describe the properties of the compounds used and to help create the necessary basis for the design of new and targeted bio-inspired molecules.
机译:在目前的工作中,评估了五种2-苯乙烯基-1-苯并吡啶鎓盐及其对TiO纳米晶层的相对自组装过程,作为染料敏化太阳能电池(DSSC)中的光敏剂。这些2-styryl-1-benzopyrylium盐与半导体的集成可实现适用于材料科学智能应用的高度特定的功能。在溶液中以及吸附到二氧化钛薄膜上后,对这五种生物启发型染料进行了光谱和光电化学测量,可以详细讨论装饰2-苯乙烯基-1-苯并吡啶核的不同供体基团的锚固能力,并证明了它们的能力。作为光敏剂。我们的结果表明,在2-styryl-1-benzopyrylium骨架的4'位引入二甲基氨基可以改变分子的共轭,从而导致在可见光区域的吸收更大,并且染料更强地将电子注入到传导中TiO2带。此外,我们的实验数据已得到理论计算的支持,目的是研究五种化合物的激发态能量。在这种特定情况下,报道的模拟有助于更好地描述所用化合物的特性,并有助于为设计新的和靶向的生物启发分子创造必要的基础。

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