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Accurate Characterization of Triple-Junction Polymer Solar Cells

机译:三结聚合物太阳能电池的准确表征

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摘要

Triple-junction device architectures represent a promising strategy to highly efficient organic solar cells. Accurate characterization of such devices is challenging, especially with respect to determining the external quantum efficiency (EQE) of the individual subcells. The specific light bias conditions that are commonly used to determine the EQE of a subcell of interest cause an excess of charge generation in the two other subcells. This results in the build-up of an electric field over the subcell of interest, which enhances current generation and leads to an overestimation of the EQE. A new protocol, involving optical modeling, is developed to correctly measure the EQE of triple-junction organic solar cells. Apart from correcting for the build-up electric field, the effect of light intensity is considered with the help of representative single-junction cells. The short-circuit current density (J(SC)) determined from integration of the EQE with the AM1.5G solar spectrum differs by up to 10% between corrected and uncorrected protocols. The results are validated by comparing the EQE experimentally measured to the EQE calculated via optical-electronic modeling, obtaining an excellent agreement.
机译:三结器件架构代表了高效有机太阳能电池的有前途的战略。此类设备的准确表征具有挑战性,尤其是在确定各个子电池的外部量子效率(EQE)方面。通常用于确定目标子电池的EQE的特定光偏置条件会导致其他两个子电池中产生过多的电荷。这导致在感兴趣的子电池上形成电场,从而增强了电流产生并导致对EQE的高估。开发了一种涉及光学建模的新协议,可以正确测量三结有机太阳能电池的EQE。除了校正累积电场外,还可以借助代表性的单结电池来考虑光强度的影响。根据EQE与AM1.5G太阳光谱的积分确定的短路电流密度(J(SC))在经过校正和未经校正的协议之间最多相差10%。通过将实验测得的EQE与通过光电模型计算出的EQE进行比较,可以验证结果,从而获得极好的一致性。

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