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首页> 外文期刊>Bulletin of the Chemical Society of Japan >Theoretical Study on the Excited Electronic States of Coronene and Its pi-Extended Molecules Using the Symmetry-Adapted Cluster-Configuration Interaction Method
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Theoretical Study on the Excited Electronic States of Coronene and Its pi-Extended Molecules Using the Symmetry-Adapted Cluster-Configuration Interaction Method

机译:使用对称性簇配置相互作用方法对冠烯及其Pi扩展分子激发电子状态的理论研究

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摘要

The excited electronic states and optical absorption spectra of coronene (C24H12), hexa-peri-hexabenzocoronene (HBC) (C42H18), and circumcoronene (C54H18) were studied using the symmetry-adapted cluster-configuration interaction (SAC-CI) method. For coronene and HBC, the SAC-CI calculations reproduced the experimental spectra well and predicted optically forbidden excited states. For HBC, the symmetry lowering enhanced the intensity of the S-2 state that corresponds to the p-band, and the SAC-CI calculation predicted the existence of the second and third optically allowed states around the beta-band region near 4.0 eV. For circumcoronene, the SAC-CI calculation predicted a strong absorption of the beta-band in the visible light region. The mechanisms of energy splitting for the HOMO-LUMO transition were investigated. Electron correlation was the most important factor for the energy splitting between the lowest and the next-lowest states. Configuration interaction with single excitations (CIS) calculations could not correctly predict the relative energies of these states in coronene and circumcoronene. For HBC, on the other hand, the CIS calculation provided the same energy order as the SAC-CI calculation.
机译:使用对称适应的聚类配置相互作用(SAC-CI)方法研究了核烯(C24H12),六甲基甲苯(HBC)(C42H18)和环烯(C54H18)的激发电子状态和光学吸收光谱。对于核糖烯和HBC,SAC-CI计算再现实验光谱阱并预测光学禁止的激发态。对于HBC,降低对称增强对应于P波段的S-2状态的强度,并且SAC-CI计算预测了在4.0eV附近的β带区域周围的第二和第三光学允许的状态的存在。对于甘蓝烷基,SAC-CI计算预测了可见光区域中的β带的强烈吸收。研究了HOMO-LUMO转变的能量分裂机制。电子相关是最低和下一个状态之间的能量分裂的最重要因素。与单一激发(CIS)计算的配置相互作用无法正确预测冠烯和环烯中这些状态的相对能量。另一方面,对于HBC,CIS计算提供了与SAC-CI计算相同的能量令。

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