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罗丹明 B 和品红氯化碳的密度泛函理论计算。优化基态、偶极矩、垂直电离势、绝热电子亲合能和最低激发三重态。

Density functional theory calculations on rhodamine B and pinacyanol chloride. Optimized ground state, dipole moment, vertical ionization potential, adiabatic electron affinity and lowest excited triplet state.

机构信息

Department of Physical Sciences, University of Puerto Rico, San Juan, Puerto Rico.

出版信息

Photochem Photobiol. 2013 Jan-Feb;89(1):51-60. doi: 10.1111/j.1751-1097.2012.01222.x. Epub 2012 Sep 26.

Abstract

The ground state configuration of the gas phase cationic dyes pinacyanol chloride and rhodamine B are optimized with HF/6-311 + G(2d,2p) method and basis set. B3PW91/6-311 + G(2df,2p) functional and basis set is used to calculate the Mulliken atom charge distribution, total molecular energy, the dipole moment, the vertical ionization potential, the adiabatic electron affinity and the lowest excited triplet state, the last three as an energy difference between separately calculated open shell and ground states. The triplet and extra electron states are optimized to find the relaxation energy. In the ground state optimization of both dyes the chloride anion migrates to a position near the center of the chromophore. For rhodamine B the benzoidal group turns perpendicular to the chromophore plane. For both dyes, the LUMO is mostly of π character associated with the aromatic part of the molecule containing the chromophore. The highest occupied MOs consist of three almost degenerate eigenvectors involving the chloride anion coordinated with σ electrons in the molecular framework. The fourth highest MO is of π character. For both molecules in the gas phase ionization process the chloride anion loses the significant fraction of electric charge. In electron capture, the excess charge goes mainly on the dye cation.

摘要

采用 HF/6-311 + G(2d,2p) 方法和基组对气相阳离子染料隐花青氯和罗丹明 B 的基态构型进行了优化。采用 B3PW91/6-311 + G(2df,2p) 函数和基组计算了 Mulliken 原子电荷分布、总分子能量、偶极矩、垂直电离势、绝热电子亲合能和最低激发三重态,后三个作为分别计算开壳层和基态之间的能量差。优化三重态和额外电子态以找到弛豫能。在两种染料的基态优化中,氯离子迁移到靠近发色团中心的位置。对于罗丹明 B,苯并基团垂直于发色团平面。对于两种染料,最低未占据分子轨道(LUMO)主要具有与分子中包含发色团的芳香部分相关的π 特征。最高占据分子轨道(HOMO)由三个几乎简并的本征向量组成,涉及与分子框架中的σ 电子配位的氯离子。第四个最高分子轨道具有π 特征。在气相离子化过程中,两种分子的氯离子失去了相当大的部分电荷。在电子捕获过程中,多余的电荷主要在染料阳离子上。

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