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基于与辅助苯并噻二唑受体相连的柔性链的卟啉染料的高效太阳能电池:抑制染料聚集和变形的影响。

Efficient Solar Cells Based on Porphyrin Dyes with Flexible Chains Attached to the Auxiliary Benzothiadiazole Acceptor: Suppression of Dye Aggregation and the Effect of Distortion.

机构信息

Key Laboratory for Advanced Materials and Institute of Fine Chemicals, School of Chemistry and Molecular Engineering, East China University of Science & Technology , Shanghai 200237, P. R. China.

East China Sea Fisheries Research Institute, Chinese Fisheries Academy of Fishery Science , 300 Jungong Road, Shanghai 200090, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2017 Oct 25;9(42):36875-36885. doi: 10.1021/acsami.7b12066. Epub 2017 Oct 11.

Abstract

Donor-π-acceptor-type porphyrin dyes have been widely used for the fabrication of efficient dye-sensitized solar cells (DSSCs) owing to their strong absorption in the visible region and the ease of modifying their chemical structures and photovoltaic behavior. On the basis of our previously reported efficient porphyrin dye XW11, which contains a phenothiazine-based electron donor, a π-extending ethynylene unit, and an auxiliary benzothiadiazole acceptor, we herein report the syntheses of novel porphyrin dyes XW26-XW28 by introducing one or two alkyl/alkoxy chains into the auxiliary acceptor. The introduced chains can effectively suppress dye aggregation. As a result, XW26-XW28 show excellent photovoltages of 700, 701, and 711 mV, respectively, obviously higher than 645 mV obtained for XW11. Nevertheless, the optimized structures of XW26 and XW27 exhibit severe distortion, showing large dihedral angles of 57.2° and 44.0°, respectively, between the benzothiadiazole and benzoic acid units, resulting from the steric hindrance between the benzoic acid unit and the neighboring alkyl/alkoxy chain on the benzothiadiazole unit, and thus blue-shifted absorption, decreased photocurrents. and low efficiencies of 5.19% and 6.42% were observed for XW26 and XW27, respectively. Interestingly, XW26 exhibits a more blue-shifted absorption spectrum relative to XW27, indicating that the steric hindrance of the alkyl/alkoxy chains has a more pronounced effect than the electronic effect. Different from XW26 and XW27, XW28 contains only one alkyl chain neighboring the ethynylene unit, which does not induce obvious steric hindrance with the benzoic acid unit, and thus distortion of the molecule is not seriously aggravated compared with XW11. Hence, its absorption spectrum and photocurrent are similar to those of XW11. As a result, a higher efficiency of 9.12% was achieved for XW28 because of its suppressed dye aggregation and higher photovoltage. It is worth noting that a high efficiency of 10.14% was successfully achieved for XW28 upon coadsorption with CDCA, which is also higher than the corresponding efficiency obtained for XW11. These results provide a novel approach for developing efficient porphyrin dyes by introducing chains into the suitable position of the auxiliary benzothiadiazolyl moiety to suppress dye aggregation, without seriously aggravating distortion of the dye molecules.

摘要

供体-π-受体型卟啉染料由于其在可见光区的强吸收以及易于修饰其化学结构和光伏性能,已被广泛用于制备高效染料敏化太阳能电池(DSSC)。基于我们之前报道的含有吩噻嗪基给体、π 扩展乙炔基单元和辅助苯并噻二唑受体的高效卟啉染料 XW11,我们在此通过在辅助受体中引入一个或两个烷基/烷氧基链来合成新型卟啉染料 XW26-XW28。引入的链可以有效地抑制染料聚集。结果,XW26-XW28 分别显示出 700、701 和 711 mV 的优异光伏电压,明显高于 XW11 获得的 645 mV。然而,优化后的 XW26 和 XW27 的结构表现出严重的扭曲,苯并噻二唑和苯甲酸单元之间的二面角分别为 57.2°和 44.0°,这是由于苯甲酸单元与苯并噻二唑单元上相邻的烷基/烷氧基链之间的空间位阻所致,因此吸收发生蓝移,光电流降低,效率分别为 5.19%和 6.42%。有趣的是,与 XW27 相比,XW26 表现出更蓝移的吸收光谱,表明烷基/烷氧基链的空间位阻比电子效应具有更显著的影响。与 XW26 和 XW27 不同,XW28 仅在乙炔基单元附近含有一个烷基链,与苯甲酸单元没有引起明显的空间位阻,因此与 XW11 相比,分子的扭曲没有严重加剧。因此,其吸收光谱和光电流与 XW11 相似。结果,XW28 获得了更高的 9.12%的效率,因为它抑制了染料聚集并提高了光伏电压。值得注意的是,通过与 CDCA 共吸附,XW28 成功获得了 10.14%的高效率,这也高于 XW11 对应的效率。这些结果为通过在辅助苯并噻二唑部分的适当位置引入链来抑制染料聚集,而不会严重加剧染料分子的扭曲,提供了开发高效卟啉染料的新方法。

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