首页> 外文期刊>Journal of chemical theory and computation: JCTC >Electronic Excitation Energies in Dimers between Radical Ions Presenting Long, Multicenter Bonding
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Electronic Excitation Energies in Dimers between Radical Ions Presenting Long, Multicenter Bonding

机译:呈现长的多中心键合的自由基离子之间的二聚体中的电子激发能

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The formation of long, multicenter dimers between radical ions is usually monitored through UV-vis spectroscopy given the characteristic low-energy absorption band that they exhibit, not observed for the parent monomers. In this work, the performance of CASPT2, RASPT2, and TD-DFT methods for obtaining excitation energies of the long, multicenter bonded pi-[TCNE](2)(2-) and pi-[TTF](2)(2+) dimers has been addressed (TCNE = tetracyanoethylene; TTF = tetrathiafulvalene). The impact of the active space on the vertical electronic transitions computed at the RASPT2 and CASPT2 levels has been tested against experimentally observed absorption bands. Analogous tests have been carried out for a wide variety of density functionals within the TD-DFT formalism. Our calculations show that whereas CASPT2 predicts very accurate excitation energies for the pi-[TCNE](2)(2-), the mean absolute error for pi-[TTF](2)(2+) is higher for CASPT2 than for TD-DFT calculations, whenever pure density functionals or low % HF exchange hybrid functionals are used. Hybrid functionals with high % HF exchange (and thus RSH functionals) conduct to large errors on the excitation energies in both liners. Furthermore, vertical electronic transitions are also obtained for 100 configurations extracted from a 45 Ps molecular dynamics (CPMD) simulation aimed at providing an accurate description of the thermal fluctuation effects of a pi-[TCNE](2)(2-) dimer in dichloromethane. These thermal effects explain the shape of the experimental UV-vis spectrum, where the lowest HOMO -> LUMO absorption presents a broad band and the following HOMO-1 -> LUMO absorption exhibits a narrower band.
机译:自由基离子之间长的多中心二聚体的形成通常通过紫外-可见光谱法进行监测,前提是它们表现出特征性的低能吸收带,而对于母体单体则没有观察到。在这项工作中,CASPT2,RASPT2和TD-DFT方法在获得长的多中心键pi- [TCNE](2)(2-)和pi- [TTF](2)(2+)的激发能方面的性能)已经解决了二聚体(TCNE =四氰基乙烯; TTF =四硫富瓦烯)。已针对实验观察到的吸收带测试了活性空间对在RASPT2和CASPT2水平上计算出的垂直电子跃迁的影响。在TD-DFT形式主义中,已经对各种密度泛函进行了类似的测试。我们的计算表明,尽管CASPT2预测pi- [TCNE](2)(2-)的激发能量非常精确,但CASPT2的pi- [TTF](2)(2+)的平均绝对误差比TD高-DFT计算,无论何时使用纯密度官能团或低%HF交换杂化官能团。 HF交换率高的混合功能(以及RS​​H功能)在两个衬套的激发能上都会产生较大的误差。此外,还获得了从45 Ps分子动力学(CPMD)模拟中提取的100种构型的垂直电子跃迁,旨在准确描述pi- [TCNE](2)(2-)二聚体在二氯甲烷中的热涨落效应。这些热效应解释了实验紫外可见光谱的形状,其中最低的HOMO-> LUMO吸收呈现较宽的谱带,随后的HOMO-1-> LUMO吸收呈现较窄的谱带。

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