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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Development of D-π-Cat fluorescent dyes with a catechol group for dye-sensitized solar cells based on dye-to-TiO2 charge transfer
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Development of D-π-Cat fluorescent dyes with a catechol group for dye-sensitized solar cells based on dye-to-TiO2 charge transfer

机译:基于染料-TiO2电荷转移的具有邻苯二酚基团的D-π-Cat荧光染料用于染料敏化太阳能电池的开发

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D-π-Cat fluorescent dyes YM-1 and YM-2 with a diphenylamine moiety as the electron-donating group, a catechol (Cat) unit as the anchoring group and fluorene or carbazole as the it-conjugated system were designed and developed as a photosensitizer for type-II dye-sensitized solar cells (DSSCs), which have a direct electron-injection pathway from the dye to the conduction band (CB) of the TiO2 electrode by photoexcitation of the dye-to-TiO2 charge transfer (DTCT) bands. Furthermore, not only to gain insight into the influence of the molecular structure of D-π-Cat dyes on the appearance of a DTCT band and the electron-injection mechanism, but also to investigate the impacts of the DTCT characteristics of D-π-Cat dyes on the photovoltaic performances of DSSCs, a D-π-Cat fluorescent dye YM-3 with carbazole-terthiophene as the π-conjugated system was also synthesized. It was found that the D-π-Cat dyes possess a good light-harvesting efficiency (LHE) in the visible region due to a broad absorption band corresponding to DTCT upon binding to a TiO2 film. The incident photon-to-current conversion efficiency (IPCE) corresponding to the DTCT band for DSSCs based on YM-1 and YM-2 is higher than that for YM-3. This work indicates that the stabilization of the LUMO level and the expansion of the π-conjugated system by the introduction of a long π-bridge such as terthiophene on the Cat moiety can lead to an increase in the intramolecular charge transfer (ICT) excitation based on π -> π* transition with a decrease in the DTCT characteristics, resulting in enhancement of an indirect electron-injection pathway from the excited dye to the CB of TiO2 by photoexcitation of the local band of the adsorbed dye on TiO2.
机译:设计并开发了以二苯胺部分为供电子基团,邻苯二酚(Cat)单元为锚定基团,芴或咔唑为共轭体系的D-π-Cat荧光染料YM-1和YM-2。用于II型染料敏化太阳能电池(DSSC)的光敏剂,通过光激发染料到TiO2的电荷转移(DTCT),具有从染料到TiO2电极的导带(CB)的直接电子注入路径)乐队。此外,不仅要了解D-π-Cat染料的分子结构对DTCT带的外观和电子注入机理的影响,而且要研究D-π-Cat染料的DTCT特性的影响。利用DSSCs的光伏性能合成了猫染料,以咔唑-对噻吩为π共轭体系,合成了D-π-Cat荧光染料YM-3。发现D-π-Cat染料在可见光区域具有良好的光收集效率(LHE),这是由于在与TiO 2膜结合时对应于DTCT的宽吸收带。与基于YM-1和YM-2的DSSC的DTCT波段相对应的入射光子-电流转换效率(IPCE)高于YM-3。这项工作表明,通过在Cat部分上引入长的π-桥(例如,噻吩基)来稳定LUMO能级并扩展π-共轭体系可以导致基于分子内电荷转移(ICT)激发的增加在π->π*跃迁上,DTCT特性降低,通过光激发TiO2上吸附的染料的局部带,增强了从激发的染料到TiO2的CB的间接电子注入路径。

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