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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Influence of conjugated re-linker in D-D-π-A indoline dyes: towards long-term stable and efficient dye-sensitized solar cells with high photovoltage
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Influence of conjugated re-linker in D-D-π-A indoline dyes: towards long-term stable and efficient dye-sensitized solar cells with high photovoltage

机译:共轭重联剂对D-D-π-A吲哚啉染料的影响:朝着长期稳定而高效的高光电压染料敏化太阳能电池发展

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The judicious choice of conjugated π-linkers is a critical strategy towards the energy-level engineering of donor-π-acceptor (D-π-A) sensitizers. Given that the vinyl bond on π-bridge thiophene segment can deteriorate its intrinsic photo-stability, we systematically study three D-D-π-A indoline dyes C-CA, WBS-1T and WBS-1F with different conjugated π-linkers (vinylthiophene, thiophene and furan) for high efficiency, long-term stable dye-sensitized solar cells (DSSCs). Compared with the vinylthiophene unit in C-CA, the conjugated 7r-linker of the thiophene or furan group in WBS-1T and WBS-1F can improve the solar cell performance with a great enhancement in the open-circuit photovoltage [V_(oc)). As an overall result of the upshift of the TiO2 conduction band (CB) edge and the slow charge recombination, the V_(oc) values are in the order WBS-1F (779 mV) >WBS-1T (756 mV) >C-CA (670 mV). Moreover, the CB edge shift of TiO2 is the major contribution to the large difference in V_(oc), accounting for 80% of the enhancement. Both the stepped light-induced transient measurements (SLIT) and the molecular dipole simulation are accounted for well by the observed superior photovoltage upon removal of the vinyl group in the conjugated π-linker. The higher molecular dipole moments can bring forth a more effective charge separation between donor and acceptor units, resulting in a remarkable increase in V_(oc)- Using a liquid electrolyte, WBS-1F shows an impressively high efficiency of 9.49% with a high photovoltage of 779 mV. Its efficiency reaches 8.03% with ionic-liquid electrolyte while it reduces to 7.60% after a 1000 h aging test. Our work has shown that for D-π-A organic dyes, the vinyl unit in the conjugated re-linker is detrimental to the molecular dipole moment, the upshift of TiO2 CB edge, and the suppression of charge recombination, as well as the photo-stability.
机译:明智地选择共轭π接头是对供体π受体(D-π-A)敏化剂进行能级工程设计的关键策略。鉴于π-桥噻吩链段上的乙烯基键会破坏其固有的光稳定性,我们系统地研究了三种具有不同共轭π-连接基的DD-π-A吲哚啉染料C-CA,WBS-1T和WBS-1F(乙烯基噻吩,噻吩和呋喃),用于高效,长期稳定的染料敏化太阳能电池(DSSC)。与C-CA中的乙烯基噻吩单元相比,WBS-1T和WBS-1F中噻吩或呋喃基团的共轭7r-连接基可以改善太阳能电池的性能,并且开路光电压[V_(oc) )。由于TiO2导带(CB)边缘的上移和电荷缓慢复合的总体结果,V_(oc)值的顺序为WBS-1F(779 mV)> WBS-1T(756 mV)> C- CA(670 mV)。此外,TiO2的CB边缘偏移是V_(oc)的较大差异的主要贡献,占增强的80%。步进光诱导的瞬态测量(SLIT)和分子偶极子模拟都很好地说明了在除去共轭π-连接基中的乙烯基时观察到的优异的光电压。较高的分子偶极矩可以在供体和受体单元之间实现更有效的电荷分离,从而导致V_(oc)显着增加。使用液体电解质,WBS-1F在高光电压下的效率高达9.49%,令人印象深刻779毫伏。在离子液体电解质中,其效率达到8.03%,而在经过1000小时的老化测试后,效率降至7.60%。我们的工作表明,对于D-π-A有机染料,共轭重连体中的乙烯基单元不利于分子偶极矩,TiO2 CB边缘的上移,电荷重组的抑制以及照片。 -稳定性。

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