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首页> 外文期刊>RSC Advances >New thieno[3,2-b][1]benzothiophene-based organic sensitizers containing pi-extended thiophene spacers for efficient dye-sensitized solar cells
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New thieno[3,2-b][1]benzothiophene-based organic sensitizers containing pi-extended thiophene spacers for efficient dye-sensitized solar cells

机译:新型的噻吩并[3,2-b] [1]基于苯并噻吩的有机增感剂,其包含π-延伸的噻吩间隔基,可用于高效的染料敏化太阳能电池

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Three new thieno[3,2-b][1]benzothiophene (TBT)-based D-pi-A organic sensitizers containing the thiophene pi-spacer (SGT-121, 123 and 125) have been synthesized for the application of dye-sensitized solar cell (DSSC), where TBT was employed as a new fused pi-bridge unit using the advantages of good co-planarity with the linkage between the thiophene unit and the phenyl unit of the triphenylamine group. Specifically, the combination of a dihexyloxyphenyl-substituted biphenylamine donor and the TBT pi-bridge plays multifunctional roles, e.g., the enhanced ability of the pi-bridge and donor, slow charge recombination and prevention of dye aggregation in the D-pi-A sensitizer. The photophysical, electrochemical and photovoltaic properties of the SGT sensitizers were systematically investigated. As a strategy for the improvement of absorption abilities, the various thiophene derivatives, e.g., those with thiophene (T, SGT-121), bithiophene (BT, SGT-123) and thienothio[3,2-b] thiophene (TT, SGT-125) moieties, were incorporated as pi-spacers between the TBT pi-bridge and the acceptor unit. The introduction of thiophene pi-spacers significantly improved the photovoltaic performance (in particular, in terms of the photocurrent J(sc) and open-circuit voltage V-oc) compared to SGT-127 without the thiophene unit. The SGT sensitizers were systematically evaluated for DSSCs based on the Co(bpy)(3)(2+/3+)(bpy = 2,2'-bipyridine) redox couple. Among the four SGT sensitizers, SGT-123-based DSSC including the BT moiety exhibited the highest power conversion efficiency of 9.69%, J(sc) of 16.16 mA cm(-2), V-oc of 830 mV and fill factor of 0.72. These results present the impact of thiophene pi-spacers for enhancing the photovoltaic performances of a D-pi-A organic sensitizer.
机译:已合成了三种新型的噻吩并[3,2-b] [1]苯并噻吩(TBT)基D-pi-A有机敏化剂,它们含有噻吩pi间隔基(SGT-121、123和125),可用于染料-的应用。敏化太阳能电池(DSSC),其中TBT被用作新的熔融pi桥单元,其优点是与噻吩单元和三苯胺基团的苯基单元之间的键合性良好。具体地,二己氧基氧基苯基取代的联苯胺供体和TBT pi桥的组合起多功能作用,例如,增强pi桥和供体的能力,缓慢的电荷重组以及防止D-pi-A敏化剂中的染料聚集。 。系统地研究了SGT敏化剂的光物理,电化学和光伏性质。作为提高吸收能力的策略,各种噻吩衍生物,例如具有噻吩(T,SGT-121),联噻吩(BT,SGT-123)和噻吩并[3,2-b]噻吩(TT,SGT)的那些噻吩衍生物-125)部分在TBT pi桥和受体单元之间作为pi间隔物引入。与没有噻吩单元的SGT-127相比,噻吩π-间隔基的引入显着改善了光伏性能(特别是光电流J(sc)和开路电压V-oc)。基于Co(bpy)(3)(2 + / 3 +)(bpy = 2,2'-bipyridine)氧化还原对,系统评估了SGT敏化剂的DSSC。在这四种SGT敏化剂中,包括BT部分的基于SGT-123的DSSC表现出最高的功率转换效率,为9.69%,J(sc)为16.16 mA cm(-2),V-oc为830 mV,填充系数为0.72 。这些结果显示了噻吩π-间隔基对于增强D-pi-A有机敏化剂的光伏性能的影响。

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