首页> 外文期刊>Chemistry: A European journal >Effects of porphyrin substituents on film structure and photoelectrochemical properties of porphyrin/fullerene composite clusters electrophoretically deposited on nanostructured SnO2 electrodes
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Effects of porphyrin substituents on film structure and photoelectrochemical properties of porphyrin/fullerene composite clusters electrophoretically deposited on nanostructured SnO2 electrodes

机译:卟啉取代基对电泳沉积在纳米结构SnO2电极上的卟啉/富勒烯复合簇的薄膜结构和光电化学性能的影响

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We have systematically examined the substituent effects of meso-tetraphenylporphyrins on film structures and the photoetectrochemical properties of the composite clusters of free-base porphyrin and C-60 electrophoretically deposited on nanostructured SnO2 electrodes. The photocurrent generation efficiency was found to correlate with the complexation ability of the porphyrin for C-60. Basically, the incident photon-to-current efficiency (IPCE) value was increased with increasing relative amounts of the porphyrin versus C-60 in the films. The unique molecular arrangement of the porphyrin with the simple, specific substituents (i.e., methoxy groups at the ineta-positions of the meso-phenyl rings of tetraphenylporphyrins (3,5-OMeTPP; TPP=tetraphenylporphyrin)) and C-60 on SnO2 electrodes resulted in the largest IPCE value (ca. 60%) among this type of photoelectrochemical device. The rapid formation of the composite clusters and microcrystals from the combination of 3,5-OMeTPP and C60 in a mixed solvent is unique as the association is accelerated by intermolecular interactions (i.e., hydrogenbonding and CH-pi interactions) between the methoxy groups of the porphyrins and the porphyrin/C-60, in addition to the pi-pi interactions between the porphyrins/C-60 and C-60 molecules. Both the films and single crystals composed of the porphyrin and C60 exhibited remarkably high electron mobility (7 x 10(-2) and 0.4 cm(2)V(-1) s(-1)), which is comparable to the value for highly efficient bulk heterojunction solar cells. Our experimental results have successfully demonstrated the importance of nanostructured electron- and hole-transporting pathways in bulk heterojunction solar cells. Such a finding will provide basic and valuable information on the design of molecular photovoltaics at the molecular level.
机译:我们已经系统地研究了介孔四苯基卟啉对膜结构的取代作用以及通过电泳沉积在纳米结构SnO2电极上的游离碱卟啉和C-60复合簇的光电技术性质。发现光电流产生效率与卟啉对C-60的络合能力相关。基本上,入射光子-电流效率(IPCE)值随着膜中卟啉相对于C-60的相对含量的增加而增加。卟啉具有简单,特定的取代基(即,四苯基卟啉(3,5-OMeTPP; TPP =四苯基卟啉)的中苯基环的中间位置的甲氧基)和SnO2电极上的C-60的独特分子排列在这种类型的光电化学装置中,IPCE值最大(约60%)。在混合溶剂中由3,5-OMeTPP和C60的组合快速形成复合簇和微晶的现象是独特的,因为通过甲氧基的甲氧基之间的分子间相互作用(即氢键和CH-pi相互作用)促进了缔合。卟啉/ C-60和C-60分子之间的pi-pi相互作用以及卟啉和卟啉/ C-60。由卟啉和C60组成的薄膜和单晶均显示出极高的电子迁移率(7 x 10(-2)和0.4 cm(2)V(-1)s(-1)),与高效体异质结太阳能电池。我们的实验结果已成功证明了纳米结构的电子和空穴传输途径在体异质结太阳能电池中的重要性。这样的发现将在分子水平上提供有关分子光伏设计的基础和有价值的信息。

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