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首页> 外文期刊>International Journal of Quantum Chemistry >Theoretical Investigations of the Perylene Electronic Structure: Monomer, Dimers, and Excimers
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Theoretical Investigations of the Perylene Electronic Structure: Monomer, Dimers, and Excimers

机译:Per电子结构的理论研究:单体,二聚体和准分子

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The structural and electronic properties of perylene molecule, dimers, and excimers have been computationally studied. The present work represents the first systematic study of perylene molecule and dimer forms by means of long-range corrected time-dependent density functional theory (TDDFT) approaches. Initially, the study explores the photophysical properties of the molecular species. Vertical transitions to many excited singlet states have been computed and rationalized with different exchange-correlation functionals. Differences between excitation energies are discussed and compared to the absorption spectrum of perylene in gas phase and diluted solution. De-excitation energy from the relaxed geometry of the lowest excited singlet is in good agreement with the experimental fluorescence emission. Optimization of several coplanar forms of the perylene pair prove that, contrary to generalized gradient approximation (GGA) and hybrid exchange-correlation functionals, corrected TDDFT is able to bind the perylene dimer in the ground state. Excitation energies from different dimer conformers point to dimer formation prior to photoexcitation. The fully relaxed excimer geometry belongs to the perfectly eclipsed conformation with D-2h symmetry. The excimer equilibrium intermolecular distance is shorter than the separation found for the ground state, which is an indication of stronger interchromophore interaction in the excimer state. Excimer de-excitation energy is in rather good agreement with the excimer band of perylene in concentrated solution. The study also scans the energy profiles of the ground and lowest excited states along several geometrical distortions. The nature of the interactions responsible for the excimer stabilization is explored in terms of excitonic and charge resonance contributions. (c) 2015 Wiley Periodicals, Inc.
机译:computation分子,二聚体和受激准分子的结构和电子性质已通过计算研究。目前的工作代表对systematic分子和二聚体形式的首次系统研究,是通过长期校正的随时间变化的密度泛函理论(TDDFT)方法进行的。最初,该研究探索了分子种类的光物理性质。垂直跃迁到许多激发单重态已经用不同的交换相关函数进行了计算和合理化。讨论了激发能之间的差异,并将其与气相和稀溶液中per的吸收​​光谱进行了比较。最低激发单线态的弛豫几​​何结构的去激发能与实验荧光发射非常吻合。 several对的几种共面形式的优化证明,与广义梯度近似(GGA)和混合交换相关功能相反,校正的TDDFT能够在基态结合bind二聚体。来自不同二聚体构象体的激发能指向在光激发之前形成二聚体。完全放松的准分子几何形状属于D-2h对称的完美黯淡构象。准分子平衡分子间的距离比基态的间隔短,这表明在准分子状态下发色团之间的相互作用更强。受激准分子的去激发能与浓溶液中the的准分子带非常一致。该研究还扫描了沿几种几何畸变的基态和最低激发态的能量分布。根据激子和电荷共振的贡献,探讨了负责准分子稳定的相互作用的性质。 (c)2015年威利期刊有限公司

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