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Electronic structure of phthalocyanines : Theoretical investigation of the optical properties of phthalocyanine monomers, dimers, and crystals

机译:酞菁的电子结构:酞菁单体,二聚体和晶体的光学性质的理论研究

摘要

We present valence effective Hamiltonian (VEH) calculations on the optical absorptions of a series of phthalocyanine compounds: the metal‐free phthalocyanine molecule, a model system for the lithium phthalocyanine molecule, the metal‐free phthalocyanine dimer, and model systems for the lutetium diphthalocyanine and the lithium phthalocyanine crystal. For these compounds, it is found that the major factor influencing the evolution of the optical transitions is not the electronic structure of the metal but rather the geometric structure: phthalocyanine intraring geometry and, in the dimers and crystals, interring separation and staggering angle. The origin of the so‐called Soret or B absorption band is calculated to be significantly more complex than was previously thought on the basis of the simple four‐orbital model.
机译:我们介绍了一系列酞菁化合物的光吸收的有效价哈密顿量(VEH)计算:无金属酞菁分子,锂酞菁分子模型系统,无金属酞菁二聚体和di二酞菁模型系统和酞菁锂晶体。对于这些化合物,发现影响光学跃迁演变的主要因素不是金属的电子结构,而是几何结构:酞菁环的几何形状,以及在二聚体和晶体中的环间距和交错角度。计算得出的所谓Soret或B吸收带的起源比以前根据简单的四轨道模型所认为的要复杂得多。

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