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首页> 外文期刊>Materials >Mechanical Properties of ZTO, ITO, and a-Si:H Multilayer Films for Flexible Thin Film Solar Cells
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Mechanical Properties of ZTO, ITO, and a-Si:H Multilayer Films for Flexible Thin Film Solar Cells

机译:用于柔性薄膜太阳能电池的ZTO,ITO和A-Si:H多层薄膜的机械性能

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The behavior of bi- and trilayer coating systems for flexible a-Si:H based solar cells consisting of a barrier, an electrode, and an absorption layer is studied under mechanical load. First, the film morphology, stress, Young’s modulus, and crack onset strain (COS) were analyzed for single film coatings of various thickness on polyethylene terephthalate (PET) substrates. In order to demonstrate the role of the microstructure of a single film on the mechanical behavior of the whole multilayer coating, two sets of InSnOx (indium tin oxide, ITO) conductive coatings were prepared. Whereas a characteristic grain–subgrain structure was observed in ITO-1 films, grain growth was suppressed in ITO-2 films. ITO-1 bilayer coatings showed two-step failure under tensile load with cracks propagating along the ITO-1/a-Si:H-interface, whereas channeling cracks in comparable bi- and trilayers based on amorphous ITO-2 run through all constituent layers. A two-step failure is preferable from an application point of view, as it may lead to only a degradation of the performance instead of the ultimate failure of the device. Hence, the results demonstrate the importance of a fine-tuning of film microstructure not only for excellent electrical properties, but also for a high mechanical performance of flexible devices (e.g., a-Si:H based solar cells) during fabrication in a roll-to-roll process or under service.
机译:在机械载荷下研究了由屏障,电极和吸收层组成的柔性A-Si:H基于太阳能电池的双和三层涂层系统的行为。首先,对聚对苯二甲酸乙二醇酯(PET)底物上的各种厚度的单膜涂层分析薄膜形态,应力,杨氏模量和裂纹发作菌株(COS)。为了证明单个膜的微观结构对整个多层涂层的力学行为的作用,制备了两组insnox(氧化铟锡,ITO)导电涂层。虽然在ITO-1膜中观察到特征晶粒层结构,但在ITO-2膜中抑制了晶粒生长。 ITO-1双层涂层在拉伸载荷下显示出两步衰竭,沿ITO-1 / A-Si:H界面传播,而基于无定形ITO-2的相当的双层和三层脉冲脉冲,而基于无定形ITO-2贯穿所有组成层。从应用程序的角度来看,优选两步故障,因为它可能仅导致性能的劣化而不是设备的最终失败。因此,结果证明了薄膜微观结构的微调不仅用于优异的电性能,而且还用于在卷中制造期间柔性器件(例如,基于A-Si:H基于Si:H基于Si:H太阳能电池)的高机械性能的重要性。滚动过程或在服务下。

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