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Structural and solvent effects on the spectroscopic properties of 1, 8-naphthalimide derivatives: A density functional study

机译:结构和溶剂对1,8-萘二甲酰亚胺衍生物光谱性质的影响:密度泛函研究

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摘要

The molecular structures of 1, 8-naphthalimide derivatives were investigated at density functional theory level within framework of PBE1PBE/6-31G*. The vertical ionization potential and their delocalization energy of the X-ray solid structure and gas-phase optimized structure were explored. The configuration difference between them was attributed to the π-π interaction of the solid effect, which has negligible effect on their absorption spectra. Solid effect also weakens the intramolecular interaction. Their absorption and luminescent spectra in gas and solvent phase were calculated by time-dependent density functional theory (TDDFT) and conductor polarizable continuum models (CPCM)-TDDFT approaches. Obvious red shifts from the solvent effect were found. Substituents on the imides will not improve their spectra properties a lot, whereas substituents on the naphthalene of naphthalimide would modify their properties to emit different spectra. Systematical deviation of vertical excitation energy from absorption and emission spectra, obtained by CPCM-PBEPBE/6-31G* and CIS-CPCM-PBEPBE/6- 31G* models, were about 0.05 eV and 0.02 eV compared with the experimental values.
机译:在PBE1PBE / 6-31G *的框架内,以密度泛函理论水平研究了1,8-萘二甲酰亚胺衍生物的分子结构。探索了X射线固体结构和气相优化结构的垂直电离势及其离域能。它们之间的构型差异归因于固体效应的π-π相互作用,这对其吸收光谱的影响可忽略不计。固体作用还削弱了分子内的相互作用。通过时变密度泛函理论(TDDFT)和导体极化连续体模型(CPCM)-TDDFT方法计算了它们在气相和溶剂相中的吸收和发光光谱。发现溶剂效应产生明显的红移。酰亚胺上的取代基不会大大改善其光谱性质,而萘二甲酰亚胺上萘上的取代基会改变其性质以发出不同的光谱。通过CPCM-PBEPBE / 6-31G *和CIS-CPCM-PBEPBE / 6-31G *模型获得的垂直激发能量与吸收光谱和发射光谱的系统偏差与实验值相比分别约为0.05 eV和0.02 eV。

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