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Influence of the aggregate state on band structure and optical properties of C60 computed with different methods

机译:聚集状态对不同方法计算的C60带结构和光学性质的影响

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摘要

C60 and C60 based molecules are efficient acceptors and electron transport layers for planar perovskite solar cells. While properties of these molecules are well studied by ab initio methods, those of solid C60, specifically its optical absorption properties, are not. We present a combined density functional theory-Density Functional Tight Binding (DFTB) study of the effect of solid state packing on the band structure and optical absorption of C60. The valence and conduction band edge energies of solid C60 differ on the order of 0.1 eV from single molecule frontier orbital energies. We show that calculations of optical properties using linear response time dependent-DFT(B) or the imaginary part of the dielectric constant (dipole approximation) can result in unrealistically large redshifts in the presence of intermolecular interactions compared to available experimental data. We show that optical spectra computed from the frequency-dependent real polarizability can better reproduce the effect of C60 aggregation on optical absorption, specifically with a generalized gradient approximation functional, and may be more suited to study effects of molecular aggregation. Published by AIP Publishing.
机译:C60和C60基于分子是有效的受体和用于平面钙钛矿太阳能电池的电子传输层。虽然这些分子的性质是公从头方法,这些固体C60的,特别是其光吸收特性的研究,则不是。我们提出了一个合并的密度泛函理论-密度泛函紧绑定的固态填料对能带结构和C60的光吸收的影响(DFTB)的研究。固体C60的价带和导带边缘能量为0.1eV的从单分子的前沿轨道能量的数量级上不同。我们示出了使用线性响应时间从属DFT(B)或介电常数(偶极近似)的虚数部可导致分子间的相互作用的存在下相比,实验数据不切实际大红移的光学性质的该计算。我们示出了从频率 - 相关真实极化计算可以更好地再现上的光学吸收C60聚集的效果,即光谱,特别是与一个广义梯度近似功能,并且可以更适合于分子聚集的研究效果。通过AIP发布发布。

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