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首页> 外文期刊>New Journal of Chemistry >Photovoltaic performance of novel push-pull-push thienyl-Bodipy dyes in solution-processed BHJ-solar cells
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Photovoltaic performance of novel push-pull-push thienyl-Bodipy dyes in solution-processed BHJ-solar cells

机译:新型推-推-噻吩-Bodipy染料在溶液处理的BHJ太阳能电池中的光伏性能

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This work explores the synthesis of extended dipyrromethene dyes engineered from thiophene-linked triphenylamine modules in order to favor pronounced charge transfer within the dyes and to enable their use in solar cells. We found that these sotuble dyes absorb up to 760 nm in solution and 850 nm in thin films. An effective charge transfer absorption band was found at around 460 nm. In the crystal lattice, molecules are organized in layers separated by 3.50 A with pronounced n-n stacking and S S interactions. The electroactivity of the dyes indicates that electron injection in PC71BM is feasible. Bulk heterojunction solar cells based upon dyes 1 and 2 in an optimized device structure ITO/Ca/1 or 2:PC_(71)BM/MoO3/Ag provide a power conversion efficiency of about 1.5% after thermal annealing.
机译:这项工作探索了由噻吩连接的三苯胺模块改造而来的扩展二吡咯亚甲基染料的合成,以利于染料内明显的电荷转移并使其能够用于太阳能电池。我们发现这些固溶染料在溶液中最多吸收760 nm,在薄膜中最多吸收850 nm。在约460nm处发现有效的电荷转移吸收带。在晶格中,分子以3.50 A隔开的层组织,具有明显的n-n堆积和S S相互作用。染料的电活性表明在PC71BM中注入电子是可行的。在优化的器件结构ITO / Ca / 1或2:PC_(71)BM / MoO3 / Ag中,基于染料1和2的体异质结太阳能电池在热退火后可提供约1.5%的功率转换效率。

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