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Synergistic Effects of Electric-Field-Assisted Annealing and Thermal Annealing in Bulk-Heterojunction Solar Cells

机译:电磁辅助退火和热退火在散装 - 异质结太阳能电池中的协同效应

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摘要

We propose an optimum low-temperature-based annealing procedure for semicrystalline donor-fullerene solar cells that is well-suited for plastic and flexible substrates. This proposed alternate strategy utilizes an external electric field (EF) across the bulk heterojunction (BHJ) film during processing at a desired temperature. This processing technique is studied for different molecular weights of the donor in the BHJ blend films. The films indicate an increase in interchain interactions of the semicrystalline polymer chains and an enhancement in hole mobility with EF-assisted annealing treatment. Besides being a controlled method, this processing technique is capable of yielding solar cell devices with performance equivalent to or better than those obtained using plain thermal procedures.
机译:我们为半结晶供体 - 富勒烯太阳能电池提出了一种最佳的低温退火程序,非常适合塑料和柔性基材。 该提出的替代策略在处理期间在所需温度下在散装异质结(BHJ)膜上使用外部电场(EF)。 研究了该处理技术,用于在BHJ混合物薄膜中的供体的不同分子量。 薄膜表明半结晶聚合物链的间歇性相互作用和具有EF辅助退火处理的空穴迁移率的增强。 除了作为受控方法之外,该处理技术能够产生与使用普通热程序获得的性能等同的太阳能电池装置。

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