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Investigation of the degradation mechanisms of a variety of organic photovoltaic devices by combination of imaging techniques-the ISOS-3 \ud inter-laboratory collaboration

机译:结合成像技术-ISOS-3 \ ud研究各种有机光伏器件的降解机理 实验室间合作

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摘要

The investigation of degradation of seven distinct sets (with a number of individual cells of n ≥ 12) of state of the art organic photovoltaic devices prepared by leading research laboratories with a combination of imaging methods is reported. All devices have been shipped to and degraded at Risø DTU up to 1830 hours in accordance with established ISOS-3 protocols under defined illumination conditions. Imaging of device function at different stages of degradation was performed by laser-beam induced current (LBIC) scanning; luminescence imaging, specifically photoluminescence (PLI) and electroluminescence (ELI); as well as by lock-in thermography (LIT). Each of the imaging techniques exhibits its specific advantages with respect to sensing certain degradation features, which will be compared and discussed here in detail. As a consequence, a combination of several imaging techniques yields very conclusive information about the degradation processes controlling device function. The large variety of device architectures in turn enables valuable progress in the proper interpretation of imaging results - hence revealing the benefits of this large scale cooperation in making a step forward in the understanding of organic solar cell aging and its interpretation by state-of-the-art imaging methods. This journal is © 2012 The Royal Society of Chemistry.
机译:报告了由领先的研究实验室结合成像方法制备的七个不同组(其中单个电池的个数n≥12)的最先进有机光伏器件的降解研究。根据已建立的ISOS-3协议,在定义的照明条件下,所有设备都已运至RisøDTU并在1830小时内进行了降级。通过激光束感应电流(LBIC)扫描对降解不同阶段的器件功能进行成像;发光成像,特别是光致发光(PLI)和电致发光(ELI);以及锁定热成像(LIT)。相对于感测某些退化特征,每种成像技术都表现出其特定优势,在此将对其进行详细比较和讨论。结果,几种成像技术的结合产生了关于控制器件功能的降解过程的非常确定的信息。多种多样的设备架构反过来又为正确解释成像结果提供了宝贵的进展-因此,揭示了这种大规模合作的好处,这有助于进一步了解有机太阳能电池的老化及其最新状态的解释成像方法。该期刊为©2012皇家化学学会。

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