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Electronic structure data at ground and excited state of the structural and opto-electronic properties of organic photovoltaic materials

机译:有机光伏材料结构和光电性质的地面和激励状态的电子结构数据

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摘要

This work presents data coming from electronic structure calculations at the Density Functional Theory level, performed in a series of organic photovoltaic materials. The data represents the Cartesian coordinates of such molecular systems at the lowest energy geometry and at the first excited state. Data evidencing the nature of the photo-isomerization in the OPV systems was also obtained. Additionally, the highest probabilities of the molecular electronic transitions giving rise to the absorption spectra observed in excited state were also computed. These data may aid to estimate photovoltaic parameters, and to tailor materials intended to be implemented in solar cell devices. They may also be used as input to design a training set for machine learning analysis and artificial intelligence.
机译:该工作介绍了在一系列有机光伏材料中进行密度泛函理论水平的电子结构计算的数据。数据代表在最低能量几何形状和第一激发态处的这种分子系统的笛卡尔坐标。还获得了证明OPV系统中的光异构化性质的数据。另外,还计算了产生在激发态中观察到的吸收光谱的分子电子转变的最高概率。这些数据可以有助于估计光伏参数,并定制旨在在太阳能电池装置中实现的材料。它们还可以用作设计用于机器学习分析和人工智能的培训。

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