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Kinetics of light induced defect creation in organic solar cells

机译:光诱导有机太阳能电池中缺陷形成的动力学

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摘要

The kinetics of light-induced recombination centers in bulk heterojunction organic solar cells are measured as a function of exposure time, intensity, and the illumination photon energy. The density of induced centers increases with exposure but stabilizes partially due to self-annealing. UV exposure is roughly 50 times more effective for defect creation than white light or yellow-filtered white light. Light-induced breaking of C-H bonds to create H-related localized states is proposed as the underlying mechanism.
机译:测量体积异质结有机太阳能电池中光诱导的复合中心的动力学,该动力学是曝光时间,强度和照明光子能量的函数。感应中心的密度随曝光而增加,但由于自退火而部分稳定。紫外线照射产生缺陷的效率大约是白光或滤黄的白光的50倍。潜在的机制是光诱导的C-H键断裂以创建H相关的局部状态。

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