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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Solvent Effects on the Structure and Spectroscopy of the Emitting States of 1-Phenylpyrrole
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Solvent Effects on the Structure and Spectroscopy of the Emitting States of 1-Phenylpyrrole

机译:溶剂对1-苯基吡咯的发射态的结构和光谱的影响

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Theoretical calculations of absorption and fluorescence properties of 1-phenylpyrrole have been performed, at the CASPT2//CASSCF level, in the gas phase and in acetonitrile solution, using in the latter case the ASEP/MD method. In addition to a locally excited state, it was also possible to identify a candidate intramolecular charge transfer state that could explain the second red-shifted fluorescence band that appears in polar solvents. In the gas phase, the charge transfer state is found to lie higher in energy than the locally excited state and the Franck—Condon absorption state, making it unlikely to be reached under these conditions. In acetonitrile solution, the charge transfer state is stabilized and lies much closer to the locally excited state, becoming accessible after absorption. The results indicate that the free-energy surface of the charge transfer state is very flat in solution, and several geometries are possible, ranging from almost planar to twisted and bent. Solvent caging and transition probabilities favor emission from structures with a small twist angle between the rings and without a pyramidal atom.
机译:在CASPT2 // CASSCF水平下,在气相和乙腈溶液中,使用ASEP / MD方法,对1-苯基吡咯的吸收和荧光性质进行了理论计算。除了局部激发态外,还可以确定分子内电荷转移的候选态,这可以解释极性溶剂中出现的第二个红移荧光带。在气相中,发现电荷转移态的能量高于局部激发态和Franck-Condon吸收态,因此在这些条件下不易达到。在乙腈溶液中,电荷转移状态稳定并非常接近局部激发态,吸收后可进入。结果表明,电荷转移状态的自由能表面在溶液中非常平坦,并且可能存在几种几何形状,范围从几乎平面到扭曲和弯曲。溶剂的笼统和跃迁几率有利于从环之间具有小扭转角且没有锥体原子的结构发射。

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