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首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >PHENYLENE VINYLENE OLIGOMERS STUDIED BY THEORETICAL METHODS - JOINT ANALYSIS OF COMPUTATIONAL AND X-RAY RESULTS OF THE CONFIGURATIONAL ISOMERS OF 1,4-BIS[2-(3,4,5-TRIMETHOXYPHENYL)ETHENYL]BENZENE
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PHENYLENE VINYLENE OLIGOMERS STUDIED BY THEORETICAL METHODS - JOINT ANALYSIS OF COMPUTATIONAL AND X-RAY RESULTS OF THE CONFIGURATIONAL ISOMERS OF 1,4-BIS[2-(3,4,5-TRIMETHOXYPHENYL)ETHENYL]BENZENE

机译:理论方法研究的苯乙烯低聚物-1,4-BIS [2-(3,4,5-三甲氧基苯)乙炔]苯构型异构体的计算和X射线结果的联合分析

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摘要

The configurational isomers of 1,4-bis[2-(3,4,5-trimethoxyphenyl)ethenyl]benzene have been investigated by ab initio and MOPAC-AM1 semiempirical methods. The calculations were guided by and compared with single crystal X-ray results of the trans, trans-isomer (taker, from the literature) and of the cis,cis-isomer (reported here). Using 4-21G-based ab initio calculations, free state geometries, deviations from coplanarity, and barriers to rotation of the central and peripheral rings were evaluated. Such barriers were also enumerated for the solid state of the cis,cis- and trans, trans-isomers. A single-molecule cluster surrounded by point charges sufficed to rationalize observed solid state properties in the trans, trans-isomer, including the quasi-free rotation of the central ring. A multimolecule cluster, however, was required to rationalize the restricted rotation of the rings in the cis,cis-isomer. MOPAC-AM1 methods were used to calculate geometries and energies of rotameric forms on the singlet photoisomerization path cis,cis --> cis,trans --> trans,trans. Finally, UV absorption Wavelengths and oscillator strengths were calculated and the electronic structure of the states discussed. (C) 1996 by John Wiley & Sons, Inc. [References: 46]
机译:通过从头算和MOPAC-AM1半经验方法研究了1,4-双[2-(3,4,5-三甲氧基苯基)乙烯基]苯的构型异构体。反式,反式异构体(取自文献,取自)和顺式,顺式异构体(此处报道)的单晶X射线结果指导并与计算结果进行了比较。使用基于4-21G的从头计算,可以评估自由状态的几何形状,与共面性的偏差以及中心环和外围环旋转的障碍。还列举了对于顺式,顺式和反式,反式异构体的固态的此类屏障。由点电荷包围的单分子簇足以使在反式,反式异构体中观察到的固态性质合理化,包括中心环的准自由旋转。但是,需要多分子簇来合理化顺式,顺式异构体中环的受限旋转。 MOPAC-AM1方法用于计算单重光异构化路径上顺式,顺式->顺式,反式->反式,反式的旋转异构形式的几何形状和能量。最后,计算了紫外线吸收波长和振荡器强度,并讨论了态的电子结构。 (C)1996,John Wiley&Sons,Inc. [参考:46]

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