首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Understanding the mechanisms that change the conductivity of damaged ITO-coated polymeric films: A micro-mechanical investigation
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Understanding the mechanisms that change the conductivity of damaged ITO-coated polymeric films: A micro-mechanical investigation

机译:了解改变受损的ITO涂层聚合物薄膜的电导率的机制:微观力学研究

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摘要

Degradation from mechanical loading of transparent electrodes made of indium tin oxide (ITO) endangers the integrity of any material based on these electrodes, including flexible organic solar cells. However, how different schemes of degradation change the conductivity of ITO devices remains unclear. We propose a systematic micro-mechanics-based approach to clarify the relationship between degradation and changes in electrical resistance. By comparing experimentally measured channel crack densities to changes in electrical resistance returned by the different micro-mechanical schemes, we highlight the key role played by the residual conductivity in the interface between the ITO electrode and its substrate after delamination. We demonstrate that channel cracking alone does not explain the experimental observations. Our results indicate that delamination has to take place between the ITO electrode and the substrate layers and that the residual conductivity of this delaminated interface plays a major role in changes in electrical resistance of the degraded device.
机译:机械负载的氧化铟锡(ITO)制成的透明电极性能下降,会危及任何基于这些电极的材料的完整性,包括柔性有机太阳能电池。但是,尚不清楚不同的降解方案如何改变ITO器件的电导率。我们提出了一种基于微力学的系统方法,以阐明电阻退化和变化之间的关系。通过将实验测量的通道裂纹密度与不同的微机械方案返回的电阻变化进行比较,我们强调了分层后ITO电极与其衬底之间的界面中的剩余电导率所起的关键作用。我们证明了单独的通道开裂并不能解释实验结果。我们的结果表明,必须在ITO电极和衬底层之间发生分层,并且该分层界面的残留电导率在退化器件的电阻变化中起着重要作用。

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