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The Role of Exciton Ionization Processes in Bulk Heterojunction Organic Photovoltaic Cells

机译:激子电离过程在大容量异质结有机光伏电池中的作用

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摘要

To realize efficient photoconversion in organic semiconductors, photogenerated excitons must be dissociated into their constituent electronic charges. In an organic photovoltaic (OPV) cell, this is most often accomplished using an electron donor–acceptor (D–A) interface. Interestingly, recent work on MoOx/C60 Schottky OPVs has demonstrated that excitons in C60 may also undergo efficient bulk-ionization and generate photocurrent as a result of the large built-in field created by the MoOx/C60 interface. Here, it is demonstrated that bulk ionization processes also contribute to the short-circuit current density (JSC) and open-circuit voltage (VOC) in bulk heterojunction (BHJ) OPVs with fullerene-rich compositions. Temperature-dependent measurements of device performance are used to distinguish dissociation by bulk-ionization from charge transfer at the D–A interface. In optimized fullerene-rich BHJs based on the D–A pairing of boron subphthalocyanine chloride (SubPc)–C60, bulk-ionization is found to be responsible for ≈16% of the total photocurrent, and >30% of the photocurrent originating from C60. The presence of bulk-ionization in C60 also impacts the temperature dependence of VOC, with fullerene-rich SubPc:C60 BHJ OPVs showing a larger VOC than evenly mixed BHJs. The prevalence of bulk-ionization processes in efficient, fullerene-rich BHJs underscores the need to include these effects when engineering device design and morphology in OPVs.
机译:为了在有机半导体中实现有效的光转换,必须将光生激子解离为其组成的电荷。在有机光伏(OPV)电池中,这通常是使用电子供体-受体(DA)界面完成的。有趣的是,有关MoOx / C60肖特基OPV的最新研究表明,由于MoOx / C60界面产生的巨大内置电场,C60中的激子也可能会发生有效的体积电离并产生光电流。在此证明,本体电离过程也有助于富富勒烯成分的本体异质结(BHJ)OPV中的短路电流密度(JSC)和开路电压(VOC)。取决于器件性能的温度测量值用于区分体电离与D–A界面上电荷转移的离解。在优化的富富勒烯BHJ(基于硼亚酞菁氯化硼(SubPc)–C60的D–A配对)中,体离子化作用占总光电流的≈16%,而来自C60的光电流的> 30% 。 C60中大量电离的存在也影响了VOC的温度依赖性,富富勒烯的SubPc:C60 BHJ OPV的挥发性有机化合物比均匀混合的BHJ大。在高效,富富勒烯的BHJ中大量电离过程的普遍性凸显了在OPV的工程设备设计和形态学方面必须包括这些效应的必要性。

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