首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Structure-Property Relationships for Exciton and Charge Reorganization Energies of Dipolar Organic Semiconductors: A Combined Valence Bond Self-Consistent Field and Time-Dependent Hartree-Fock and DFT Study of Merocyanine Dyes
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Structure-Property Relationships for Exciton and Charge Reorganization Energies of Dipolar Organic Semiconductors: A Combined Valence Bond Self-Consistent Field and Time-Dependent Hartree-Fock and DFT Study of Merocyanine Dyes

机译:偶极有机半导体的激子和电荷重组能的结构-性质关系:结合的价键自洽场和时间依赖的花青染料的Hartree-Fock和DFT研究

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摘要

We present an analysis of the optoelectronic properties of merocyanine dyes by means of valence bond self-consistent field (VBSCF), time-dependent Hartree-Fock (TD-HF), density functional theory (DFT), and high-level ab initio calculations. The electronic structure of merocyanines can be described as a superposition of two resonance structures, a neutral one and a zwitterionic one. Calculated valence bond (VB) weights for these resonance structures demonstrate the importance of strong accepting groups when increasing the weight of the zwitterionic structures of different merocyanines. The dependence of exciton and charge reorganization energies on VB weights composition is analyzed, demonstrating that the special case of equal contributions of both structures, the so-called cyanine limit, goes along with minimal exciton and charge reorganization energies. For the latter, it is shown that the external (outer-sphere) reorganization energy plays a crucial role. Furthermore, a careful investigation of the excited-state behavior of merocyanines indicates that a possible excited-state torsion might be another important parameter for merocyanine-based optoelectronic devices, whereas internal (inner-sphere) charge reorganization energies of a variety of merocyanines are in a typical range for molecular semiconductors.
机译:我们通过价键自洽场(VBSCF),时变Hartree-Fock(TD-HF),密度泛函理论(DFT)和高级从头算来对部花青染料的光电性能进行分析。花青素的电子结构可以描述为两个共振结构的叠加,中性一个和两性离子的一个。这些共振结构的计算价键(VB)权重表明,当增加不同花青素的两性离子结构的重量时,强接受基团的重要性。分析了激子和电荷重组能量对VB权重组成的依赖性,证明了两种结构具有相等贡献的特殊情况,即所谓的花青限度,伴随着最小的激子和电荷重组能量。对于后者,表明外部(外部)重组能量起着至关重要的作用。此外,对花青素激发态行为的仔细研究表明,对于基于花青素的光电器件,可能的激发态扭转可能是另一个重要参数,而各种花青素的内部(内层)电荷重组能处于分子半导体的典型范围。

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