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Exploring new approaches towards the formability of mixed-ion perovskites by DFT and machine learning

机译:DFT和机器学习探索新方法朝着混合离子佩罗夫斯克斯成形性

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Recent years have witnessed a growing effort in engineering and tuning the properties of hybrid halide perovskites as light absorbers. These have led to the successful enhancement of their stability, a feature that is often counterbalanced by a reduction of their power-conversion efficiency. In order to provide a systematic analysis of the structure-property relationships of this class of compounds we have performed density functional theory calculations exploring fully inorganic ABC(3) chalcogenide (I-V-VI3), halide (I-II-VII3) and hybrid perovskites. Special attention has been given to structures featuring three-dimensional BC6 octahedral networks because of their efficient carrier transport properties. In particular we have carefully analyzed the role of BC6 octahedral deformations, rotations and tilts in the thermodynamic stability and optical properties of the compounds. By using machine learning algorithms we have estimated the relations between the octahedral deformation and the bandgap, and established a similarity map among all the calculated compounds.
机译:近年来,在工程和调整杂交卤化物Perovskites的性质作为光吸收剂的情况下,近年来的努力增长。这些导致了成功提高了它们的稳定性,这是通过减少其功率转换效率而常用的特征。为了提供对这类化合物的结构性质关系的系统分析,我们已经进行了密度泛函理论计算探讨了完全无机ABC(3)硫属化物(IV-VI3),卤化物(I-II-VII3)和杂交钙酸盐。由于其高效的载流性能,已经给了特征在于三维BC6八面体网络的结构。特别是我们仔细分析了BC6八面体变形,旋转和倾斜在化合物的热力学稳定性和光学性质中的作用。通过使用机器学习算法,我们估计了八面体变形和带隙之间的关系,并在所有计算的化合物中建立了相似性图。

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