首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >The effect of post-processing treatments on inflection points in currentvoltage curves of roll-to-roll processed polymer photovoltaics
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The effect of post-processing treatments on inflection points in currentvoltage curves of roll-to-roll processed polymer photovoltaics

机译:后处理对卷对卷加工聚合物光伏电池电流电压曲线中拐点的影响

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摘要

Inflection point behaviour is often observed in the currentvoltage (IV) curve of polymer solar cells. This phenomenon is examined in the context of flexible roll-to-roll (R2R) processed polymer solar cells in a large series of devices with a layer structure of: PETITOZnOP3HT:PCBMPEDOT:PSSAg. The devices were manufactured using a combination of slot-die coating and screen printing; they were then encapsulated by lamination using a polymer based barrier material. All manufacturing steps were carried out in ambient air. The freshly prepared devices showed a consistent inflection point in the IV curve and a corresponding poor performance or lack of photovoltaic behaviour. Upon exposure to 1000 Wm~(-2) illumination at ca. 85 °C and repeated IV scans (photo-annealing) the inflection point gradually disappeared, and performance drastically increased over time. The characteristics and stability of this "photo-annealing" behaviour was further investigated by studying the effects of several key factors: temperature, illumination and atmosphere. The results consistently showed that the inflection point is a dynamic phenomenon which can be removed under specific conditions. Subsequently, chemical characterization of device interfaces was carried out in order to identify possible chemical processes that are related to photo-annealing. A possible mechanism based on ZnO photoconductivity, photooxidation and redistribution of oxygen inside the cell is proposed, and it is anticipated that the findings are applicable to various other device structures based on semi-conducting oxides. The findings may have influences on the possibilities and scale-up of polymer solar technologies.
机译:经常在聚合物太阳能电池的电流电压(IV)曲线中观察到拐点行为。这种现象是在一系列具有以下层结构的设备中的柔性卷对卷(R2R)处理的聚合物太阳能电池的背景下检查的:PETITOZnOP3HT:PCBMPEDOT:PSSAg。这些设备是通过缝模涂布和丝网印刷相结合制造的;然后使用基于聚合物的阻隔材料通过层压将它们封装起来。所有制造步骤均在环境空气中进行。新制备的器件在IV曲线中显示出一致的拐点,并相应地表现不佳或缺乏光伏性能。在约1000 Wm〜(-2)的光照下。 85°C并重复进行IV扫描(光退火)后,拐点逐渐消失,性能随时间急剧增加。通过研究几个关键因素(温度,光照和大气)的影响,进一步研究了这种“光退火”行为的特性和稳定性。结果一致表明拐点是一种动态现象,可以在特定条件下消除。随后,对设备接口进行化学表征,以识别与光退火相关的可能化学过程。提出了一种基于ZnO光电导性,光氧化和氧气在电池内部重新分布的可能机制,并且可以预料该发现可应用于基于半导体氧化物的其他各种器件结构。这些发现可能会影响聚合物太阳能技术的可能性和扩大规模。

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