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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >An efficient method to achieve a balanced open circuit voltage and short circuit current density in polymer solar cells
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An efficient method to achieve a balanced open circuit voltage and short circuit current density in polymer solar cells

机译:在聚合物太阳能电池中实现平衡的开路电压和短路电流密度的有效方法

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摘要

Utilizing indacenodithiophene (D) and quinoxaline (A) building blocks, novel D-A-pi-A type regular terpolymers of PIDT-DTQ-TT were designed with a conjugated pi spacer of thieno[3,2-b]thiophene unit in the polymer backbone. In contrast to PIDT-DTQ with the thiophene unit as the spacer, PIDT-DTQ-TT displayed a much broader absorption with suitable HOMO energy levels and high charge carrier mobility. Also an enhanced J(sc) of 12.43 mA cm(-2) and a V-oc of 0.83 V comparable to that of PIDT-DTQ-based devices were observed in PIDT-DTQ-TT-based solar cells, indicating that the balance between J(sc) and V-oc in devices can be achieved when the spacer in the polymer backbone was altered individually in D-A-pi-A type regular terpolymers. Finally, a maximum power conversion efficiency value of 6.63% was achieved without any post-treatment in solar cells. Our results here demonstrate that tuning the conjugated spacers in D-A-pi-A type regular terpolymers individually could be an efficient method to balance the trade-off between J(s,) and V-oc, leading to an enhanced photovoltaic performance in solar cells.
机译:利用茚并二噻吩(D)和喹喔啉(A)结构单元,设计了新型的PIDT-DTQ-TT DA-pi-A型规则三元共聚物,在聚合物主链中带有噻吩并[3,2-b]噻吩单元的共轭π间隔基。与以噻吩单元为间隔基的PIDT-DTQ相比,PIDT-DTQ-TT在合适的HOMO能级和高载流子迁移率下表现出更广泛的吸收。在基于PIDT-DTQ-TT的太阳能电池中还观察到与基于PIDT-DTQ的设备相比具有增强的J(sc)为12.43 mA cm(-2)和V-oc为0.83 V,表明平衡当DA-pi-A型常规三元共聚物中聚合物主链中的间隔基单独改变时,可以实现装置中J(sc)和V-oc之间的平衡。最终,无需对太阳能电池进行任何后处理,即可实现6.63%的最大功率转换效率值。我们的结果表明,单独调节DA-pi-A型常规三元共聚物中的共轭间隔基可能是平衡J(s)和V-oc之间权衡的有效方法,从而提高了太阳能电池的光伏性能。

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