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Structure-processing-property correlations in solution-processed, small-molecule, organic solar cells

机译:固溶处理的小分子有机太阳能电池中的结构处理特性相关性

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Alkyl chains are often attached to the periphery of semiconductor molecules to impart solubility and they represent a pervasive structural element in solution processable, organic photovoltaics (OPV). It is important to understand the effects of such substitutions on the morphology and performance of organic solar cells. This investigation focuses on determining structure-property correlations in OPV devices constructed with small-molecule, solution processable electron donors based on benzothiadiazole-dithienopyrrole, mixed with the electron acceptor PCBM. Two donor molecules with the same opto-electronic molecular properties but differing alkyl substituents - without (BD) or with (BD6) hexyl side chains - are studied. The resulting device data for fabricated solar cells, across a range of processing conditions, is compared to thin-film morphology, spectroscopy, thermal analysis, and molecular dynamics simulations. Two device states of higher and lower performance, depending on the casting solvent, are obtained for the molecule without the side chains (BD); both states have amorphous mesoscale structure, but show subtle differences in the nanoscale phase separation. In contrast, for the molecule with side chains (BD6) devices have highly variable reproducibility and middling efficiency and photocurrent. The BD6 donor exhibits lower miscibility with PCBM, which correlates with the formation of a donor-enriched layer on the surface of the solar cell.
机译:烷基链通常连接到半导体分子的外围以赋予溶解性,并且它们代表了可溶液加工的有机光伏(OPV)中普遍使用的结构元素。重要的是要了解这种取代对有机太阳能电池的形态和性能的影响。这项研究的重点是确定由基于苯并噻二唑-二硫代吡咯的小分子可溶液处理的电子给体与电子受体PCBM混合构成的OPV器件中的结构性质相关性。研究了具有相同光电分子特性但烷基取代基不同的两个供体分子-不具有(BD)或具有(BD6)己基侧链。在各种处理条件下,将制造的太阳能电池的器件数据与薄膜形态,光谱学,热分析和分子动力学模拟进行比较。对于没有侧链(BD)的分子,根据浇铸溶剂的不同,会获得两种性能更高和更低的设备状态。两种状态均具有无定形的中尺度结构,但在纳米尺度相分离中显示出细微的差异。相反,对于带有侧链的分子(BD6),设备具有高度可变的重现性,中等效率和光电流。 BD6供体与PCBM的混溶性较低,这与在太阳能电池表面形成供体富集层有关。

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