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首页> 外文期刊>RSC Advances >New D–π–A dyes incorporating dithieno[3,2-b:2′,3′-d]pyrrole (DTP)-based π-spacers for efficient dye-sensitized solar cells
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New D–π–A dyes incorporating dithieno[3,2-b:2′,3′-d]pyrrole (DTP)-based π-spacers for efficient dye-sensitized solar cells

机译:新的D-π-A染料结合了双噻吩并[3,2- b :2',3'- d ]吡咯(DTP)基π-间隔基作为有效染料敏化太阳能电池

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Three D–π–A sensitizers incorporating dithieno[3,2-b:2′,3′-d]pyrrole (DTP)-based π-linkers were synthesized for fabricating efficient dye-sensitized solar cells (DSSCs). The DTP-based π-spacers were attached by 10-phenyl-10H-phenothiazine (JW1), 5,5,10,10,15,15-hexapropyl-10,15-dihydro-5H-diindeno[1,2-a:1′,2′-c]fluorene (JW2) and 4-hexyloxyphenyl (JW3). The bulky groups and alkyl chains are introduced to suppress dye aggregation as well as reduce electron recombination. An additional double bond spacer was introduced between the arylamine donor and DTP-based π-spacer in the studied dyes. Based on the theoretical calculation results, all of the dye molecules display good electron transport. The photovoltaic performances of device based on JW1, JW2 and JW3 were measured by JV characterizations in Co-phen based electrolyte, achieving power conversion efficiencies of 7.09%, 7.87% and 6.50%, respectively. The incident photon-to-current conversion efficiency (IPCE) follows the order JW2 > JW1 > JW3, which is accordance with their photovoltaic performances. IMVS results indicate that the three dyes incorporating the modified DTP-based π-spacers have an influence on the CB shift of TiO2 and the inhibition of charge recombination. Therefore, the DTP-based π-spacer is a promising building block for developing new dyes to build highly efficient DSSCs.
机译:合成了三种结合了双硫杂[3,2- b :2',3'- d ]吡咯(DTP)的π-连接基的D-π-A敏化剂,用于制造高效的染料敏化太阳能电池(DSSC)。基于DTP的π间隔基通过10-苯基-10 H -吩噻嗪(JW1),5,5,10,10,15,15-六丙基-10,15-dihydro-5连接 H -二茚基[1,2- a :1',2'- c ]芴(JW2)和4-己氧基苯基(JW3) 。引入大的基团和烷基链以抑制染料聚集并减少电子重组。在所研究的染料中,在芳胺供体和基于DTP的π-间隔基之间引入了另一个双键间隔基。根据理论计算结果,所有染料分子均显示出良好的电子传输。通过 J V 表征,在Co-phen基电解质中测量了基于JW1,JW2和JW3的器件的光伏性能,实现了7.09%,7.87%的功率转换效率和6.50%。入射光子-电流转换效率(IPCE)遵循JW2> JW1> JW3的顺序,这与它们的光电性能相符。 IMVS结果表明,三种结合了修饰的DTP的π-间隔基染料对TiO 2 的CB位移和电荷重组的抑制都有影响。因此,基于DTP的π-间隔基是开发新型染料以构建高效DSSC的有前途的构建基块。

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