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The ISOS-3 inter-laboratory collaboration focused on the stability of a variety of organic photovoltaic devices

机译:ISOS-3实验室间合作着重于各种有机光伏器件的稳定性

摘要

Seven distinct sets (n ≥ 12) of state of the art organic photovoltaic devices were prepared by leading research laboratories in a collaboration planned at the Third International Summit on Organic Photovoltaic Stability (ISOS-3). All devices were shipped to RISØ DTU and characterized simultaneously up to 1830 h in accordance with established ISOS-3 protocols under three distinct illumination conditions: accelerated full sun simulation; low level indoor fluorescent lighting; and dark storage with daily measurement under full sun simulation. Three nominally identical devices were used in each experiment both to provide an assessment of the homogeneity of the samples and to distribute samples for a variety of post soaking analytical measurements at six distinct laboratories enabling comparison at various stages in the degradation of the devices. Over 100 devices with more than 300 cells were used in the study. We present here design and fabrication details for the seven device sets, benefits and challenges associated with the unprecedented size of the collaboration, characterization protocols, and results both on individual device stability and uniformity of device sets, in the three illumination conditions. © 2012 The Royal Society of Chemistry.
机译:领先的研究实验室在第三届有机光伏稳定性国际峰会(ISOS-3)的合作下,准备了七组不同的(n≥12)最先进的有机光伏器件。所有设备均运往RISØDTU,并根据已建立的ISOS-3协议在三种不同的照明条件下同时进行长达1830小时的特性分析:室内低水平荧光灯照明;暗处,在全日照下每天进行测量。在每个实验中使用了三个名义上相同的设备,以提供对样品同质性的评估,并在六个不同的实验室为各种浸泡后分析测量分配样品,从而可以在设备降解的各个阶段进行比较。这项研究使用了100多个具有300多个细胞的设备。我们在此介绍了这七个设备组的设计和制造细节,以及与协作的空前规模,特性协议相关的好处和挑战,以及在三种照明条件下单个设备的稳定性和设备组的均匀性的结果。 ©2012皇家化学学会。

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