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首页> 外文期刊>The Journal of Chemical Physics >TTF-TCNE A CHARGE TRANSFER PI-MOLECULAR CRYSTAL WITH PARTIAL IONIC GROUND STATE - OPTICAL PROPERTIES AND ELECTRON-MOLECULAR VIBRATIONS INTERACTION
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TTF-TCNE A CHARGE TRANSFER PI-MOLECULAR CRYSTAL WITH PARTIAL IONIC GROUND STATE - OPTICAL PROPERTIES AND ELECTRON-MOLECULAR VIBRATIONS INTERACTION

机译:TTF-TCNE具有部分离子基态的电荷转移PI分子-光学性质和电子-分子相互作用

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摘要

The electronic ground state structure of the charge transfer molecular complex TTF-TCNE is investigated on the basis of its electronic and vibrational spectra. Highly oriented polycrystalline films and the spectra of the fully deuterated complex, TTF-d(4)-TCNE, allow one to obtain a full exploitation of the spectra. Using the vibrational frequencies as local probes of the electronic structure one finds a value of 0.5+/-0.1 for the degree of charge transfer of this molecular solid. This partial degree of charge transfer and the alternation of self-dimers of TTF and TCNE along the one-dimensional electronic pi-structure reveal themselves in the vibrational spectra and particularly in the charge transfer vibronic resonances present in the infrared and Raman spectra. These resonances and the electronic spectrum related to the charge transfer excitations are understood on the basis of a Holstein-Hubbard model which allows the determination of the electron-intramolecular vibration coupling constants of TTF and TCNE. (C) 1996 American Institute of Physics. [References: 40]
机译:根据其电子和振动光谱研究了电荷转移分子复合物TTF-TCNE的电子基态结构。高度取向的多晶膜和完全氘化的配合物TTF-d(4)-TCNE的光谱使人们可以完全利用光谱。使用振动频率作为电子结构的局部探针,人们发现该分子固体的电荷转移程度值为0.5 +/- 0.1。沿一维电子pi结构的这种部分电荷转移程度以及TTF和TCNE的自二聚体的交替在振动光谱中,尤其是在红外光谱和拉曼光谱中存在的电荷转移电子共振中显示出来。基于荷斯坦-哈伯德模型可以理解与电荷转移激发有关的这些共振和电子光谱,该模型可以确定TTF和TCNE的电子-分子振动耦合常数。 (C)1996年美国物理研究所。 [参考:40]

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