首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Doubly β-Functionalized Meso-Meso Directly Linked Porphyrin Dimer Sensitizers for Photo voltaics
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Doubly β-Functionalized Meso-Meso Directly Linked Porphyrin Dimer Sensitizers for Photo voltaics

机译:双功能β-功能化介观介孔直接连接的卟啉二聚体感光剂

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摘要

Novel meso-meso directly linked porphyrin dimers tethered at β-pyrrolic positions of the porphyrin ring with 2-propenoic acids or 2,4-pentadienoic acids were prepared for sensitization of nanocrystalline titanium dioxide solar cells. Most importantly, the absorption spectra of dimeric porphyrins were notably extended into the midvisible region in the solar spectrum while the LUMO levels are sufficiently high to inject electrons to the conduction band of TiO2. Among these dimers, PEG-2b-bd-Zn2 dimer, bearing a poly(ethylene glycol) end group at one meso position, showed the highest incident photon-to-photocurrent generation with 47% efficiency at the Soret region as well as the power conversion efficiency of 4.2% under standard AM 1.5 solar condition. To elucidate electronic structures and excited-state properties, UV-vis absorption and emission, cyclic voltammetry measurements, and density functional theory calculations were performed. To our best knowledge, the obtained conversion efficiency of 4.2% from PEG-2b-bd-Zn2-sensitized DSSC is the highest photovoltaic performance among DSSCs based on oligomeric porphyrins. Thus, this work suggests that the wide spectral response of directly finked porphyrin dimers due to the excitonic coupling is an intriguing aspect of directly linked pophyrin dimers to be utilized for DSSCs and gives an insight into the design of more efficient light-harvesting molecules.
机译:制备了新型的介观介孔直接连接的卟啉二聚体,该卟啉二聚体在卟啉环的β-吡咯位置处被2-丙酸或2,4-戊二烯酸束缚,用于敏化纳米晶二氧化钛太阳能电池。最重要的是,二聚卟啉的吸收光谱显着扩展到太阳光谱的中可见区域,而LUMO的水平足够高,可以将电子注入TiO2的导带。在这些二聚体中,在一个内消旋位置带有一个聚乙二醇端基的PEG-2b-bd-Zn2二聚体显示出最高的入射光子至光电流产生,在Soret区的效率为47%,在标准AM 1.5太阳条件下的转换效率为4.2%。为了阐明电子结构和激发态特性,进行了紫外可见吸收和发射,循环伏安法测量以及密度泛函理论计算。据我们所知,从PEG-2b-bd-Zn2-Zn敏化的DSSC获得的4.2%的转换效率是基于低聚卟啉的DSSC中最高的光伏性能。因此,这项工作表明,由于激子耦合,直接有鳍的卟啉二聚体的广谱响应是直接连接的Pophyrin二聚体用于DSSC的一个有趣的方面,并为更有效的光收集分子的设计提供了见识。

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