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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Paracyclophanes as model compounds for strongly interacting π-systems, part 3: Influence of the substitution pattern on photoabsorption properties
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Paracyclophanes as model compounds for strongly interacting π-systems, part 3: Influence of the substitution pattern on photoabsorption properties

机译:对环烷作为用于强相互作用π系统的模型化合物,第3部分:取代模式对光吸收性质的影响

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摘要

The structures and energetics of the ground and first excited states of [2.2]paracyclophane (PC) and its pseudo-para- (p-DHPC) and pseudo-ortho- dihydroxy (o-DHPC) as well as monohydroxy derivates (MHPC) are investigated by quantum chemical calculations, X-ray crystallography, and resonance-enhanced multiphoton ionization spectroscopy (REMPI) in a free jet. We show that substitution of the aromatic hydrogens in PC causes significant changes of the structure and in particular its change between the ground and the excited state. The structural changes include a breathing mode as well as shift and rotation of the benzene moieties and are rationalized by the electronic structure changes upon excitation. Spin-component-scaled second-order M?ller?Plesset perturbation method (SCS-MP2) reproduces the experimental X-ray structure correctly and performs significantly better than ordinary MP2 and the B3LYP methods. The parent propagation method, SCS-approximate coupled cluster second order (SCS-CC2), yields adiabatic excitation energies within 0.1 eV of the experimental values for PC and the investigated hydroxyl derivates as well as the related aromatic molecules benzene and phenol. It is shown that zero-point vibration energy corrections at the time dependent density functional (B3LYP) level are no more accurate enough for that level of theory and have to be substituted by SCS-CC2 values. While the structures of PC and o-DHPC are only slightly modified upon excitation, p-DHPC changes its structural parameters substantially. This is in line with [1 + 1] REMPI-spectra of these substances, which are interpreted with the help of Franck-Condon simulations.
机译:[2.2]对环环烷(PC)及其伪对-对(p-DHPC)和伪邻-对二羟基(o-DHPC)以及单羟基衍生物(MHPC)的基态和第一激发态的结构和能量为在自由射流中通过量子化学计算,X射线晶体学和共振增强多光子电离光谱(REMPI)进行了研究。我们表明,PC中芳族氢的取代会引起结构的重大变化,尤其是其在基态和激发态之间的变化。结构变化包括呼吸模式以及苯部分的移位和旋转,并且通过激发时的电子结构变化来合理化。自旋分量缩放的二阶M?ller?Plesset摄动法(SCS-MP2)正确地再现了实验X射线结构,并且性能明显优于普通MP2和B3LYP方法。母体传播方法,SCS-近似耦合簇二阶(SCS-CC2),在PC和研究的羟基衍生物以及相关的芳香族分子苯和苯酚的实验值的0.1 eV内产生绝热激发能。结果表明,在与时间相关的密度泛函(B3LYP)级别上的零点振动能量校正对于该理论级别而言不够精确,必须由SCS-CC2值代替。尽管PC和o-DHPC的结构在激发后仅稍作修饰,但p-DHPC却大大改变其结构参数。这与这些物质的[1 + 1] REMPI光谱相符,后者在Franck-Condon模拟的帮助下进行了解释。

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