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Kinetics of electron recombination of dye-senitized solar cells based on TiO2 nanorod arrays sensitized with different dyes

机译:基于不同染料敏化的TiO2纳米棒阵列的染料敏化太阳能电池电子复合动力学

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摘要

The performance and electron recombination kinetics of dye-sensitized solar cells based on TiO2 films consisting of one-dimensional nanorod arrays (NR-DSSCs) which are sensitized with dye N719, C218 and D205 respectively have been studied. It has been found that the best efficiency is obtained with the dye C218 based NR-DSSCs, benefiting from a 40% higher short-circuit photocurrent density. However, the open circuit photovoltage of the N719 based cell is 40 mV higher than that of the organic dye C218 and D205 based devices. Investigation of the electron recombination kinetics of the NR-DSSCs has revealed that the effective electron lifetime, τn, of the N719 based NR-DSSC is the lowest whereas the τn of the C218 based NR-DSSC is the highest among the three dyes. The higher Voc with the N719 based NR-DSSC is originated from the more negative energy level of the conduction band of the TiO2 film. In addition, in comparison to the DSSCs with conventional nanocrystalline particles based TiO2 films, the NR-DSSCs have shown over two orders of magnitude higher τn when employing N719 as the sensitizer. Nevertheless, the τn of the DSSCs with the C218 based nanorod arrays is only ten-fold higher than the that of the nanoparticles based devices. The remarkable characteristic of the dye C218 in suppressing the electron recombination of DSSCs is discussed.
机译:研究了基于TiO2薄膜的染料敏化太阳能电池的性能和电子复合动力学,该薄膜由一维纳米棒阵列(NR-DSSC)组成,分别被染料N719,C218和D205敏化。现已发现,基于染料C218的NR-DSSC可获得最佳效率,这得益于短路光电流密度提高40%。但是,基于N719的电池的开路光电压比基于有机染料C218和D205的设备的开路光电压高40 mV。 NR-DSSCs的电子重组动力学研究表明,在三种染料中,基于N719的NR-DSSC的有效电子寿命τn最低,而基于C218的NR-DSSC的τn最高。基于N719的NR-DSSC的较高Voc源自TiO2薄膜导带的负能级较高。另外,与具有基于纳米晶体颗粒的传统TiO2薄膜的DSSC相比,NR-DSSC在使用N719作为敏化剂时,其τn值要高出两个数量级。然而,具有基于C218的纳米棒阵列的DSSC的τn仅比基于纳米粒子的设备的τn高十倍。讨论了染料C218抑制DSSCs电子重组的显着特征。

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