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Performance Enhancement of Dye-Sensitized Solar Cells by Utilizing Carbon Nanotubes as an Electrolyte-Treating Agent

机译:利用碳纳米管作为电解质处理剂来性能提高染料敏化太阳能电池

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摘要

A new carbon nanotube (CNT) function is proposed herein for dye-sensitized solar cell (DSSC) applications. In this study, single-wall CNT is used as a treating agent to conventional liquid electrolytes, which differs from the role of a gelator or an additive as reported in the literature. The experimental results show that the electrochemical properties of the electrolytes do not alter significantly after the CNT treatment; however, the conversion efficiencies of the DSSCs are evidently improved (from 8.15% to 8.70%), which is attributed mainly to the enhanced open-circuit voltages. Device characterizations indicate that the higher voltages are due to the suppression of charge recombination at the TiO2/electrolyte interface. Furthermore, based on the Raman and ultraviolet-visible spectra of the electrolytes, the concentrations of triiodide and higher polyiodide species are reduced after the CNT treatment. The Raman and XPS spectral results further verify the adsorption of polyiodides on the CNTs. More importantly, because fewer polyiodides are present in the electrolyte, fewer electrons in the TiO2 can be recombined; therefore, higher voltages are achieved for the corresponding cells. Quasi-solid-state DSSCs fabricated using CNT-treated electrolytes also demonstrate better cell performance. This CNT effect is anticipated to facilitate the progress of DSSCs.
机译:在此提出了一种新的碳纳米管(CNT)功能,用于染料敏化太阳能电池(DSSC)应用。在该研究中,单壁CNT用作常规液体电解质的处理剂,其与文献中报道的胶凝胶剂或添加剂的作用不同。实验结果表明,在CNT处理后,电解质的电化学性能不会显着改变;然而,DSSCs的转化效率显然改善了(从8.15%到8.70%),主要归因于增强的开路电压。设备表征表明较高电压是由于TiO 2 /电解质界面处的电荷重组的抑制。此外,基于电解质的拉曼和紫外 - 可见光谱,在CNT处理后,在CNT处理后的三碘化物和更高的聚碘化物物种的浓度降低。拉曼和XPS光谱结果进一步验证了CNT上的多碘公司的吸附。更重要的是,由于电解质中存在较少的多碘化物,TiO 2中的更少的电子可以重组;因此,对相应的电池实现较高的电压。使用CNT处理的电解质制造的准固态DSSC也表现出更好的细胞性能。预计该CNT效应是为了促进DSSCs的进展。

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