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Electronic structure dynamics in a low bandgap polymer studied by time-resolved photoelectron spectroscopy

机译:通过时间分辨光电子能谱研究低带隙聚合物中的电子结构动力学

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摘要

Means to measure the temporal evolution following a photo-excitation in conjugated polymers are a key for the understanding and optimization of their function in applications such as organic solar cells. In this paper we study the electronic structure dynamics by direct pump-probe measurements of the excited electrons in such materials. Specifically, we carried out a time-resolved photoelectron spectroscopy (TRPES) study of the polymer PCPDTBT by combining an extreme ultraviolet (XUV) high harmonic generation source with a time-of-flight spectrometer. After excitation to either the 1st excited state or to a higher excited state, we follow how the electronic structure develops and relaxes on the electron binding energy scale. Specifically, we follow a less than 50 fs relaxation of the higher exited state and a 10 times slower relaxation of the 1st excited state. We corroborate the results using DFT calculations. Our study demonstrates the power of TRPES for studying photo-excited electron energetics and dynamics of solar cell materials.
机译:在共轭聚合物中光激发后测量时间演变的方法是理解和优化其在有机太阳能电池等应用中功能的关键。在本文中,我们通过直接泵浦探针测量此类材料中的激发电子来研究电子结构动力学。具体来说,我们通过结合极紫外(XUV)高谐波产生源和飞行时间光谱仪对聚合物PCPDTBT进行了时间分辨光电子光谱(TRPES)研究。在激发到第一激发态或更高激发态之后,我们遵循电子结构如何在电子结合能级上发展和弛豫。具体而言,我们遵循较高退出状态的松弛小于50 fs且第一激发态的松弛小于10倍的松弛。我们使用DFT计算来证实结果。我们的研究证明了TRPES在研究光激发电子能量学和太阳能电池材料动力学方面的强大能力。

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