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Quantum chemical approach toward rational designing of highly efficient oxadiazole based oligomers used in organic field effect transistors

机译:量子化学方法可合理设计用于有机场效应晶体管的高效恶二唑基低聚物

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摘要

Density functional theory (DPT) is well suited to explore the properties of the conjugated π -electron systems. We report the ground-state geometry optimization of newly designed oxadiazole based oligomers using the DFT method with B3LYP functional and 6-31G~(**) basis set. In addition, the relevant absorption spectra at the TD-B3LYP level are also discussed. The LUMO energies of systems 3-system 8 are smaller than the parent molecule (system 1) which revealed that these would be better electron transfer materials than parent molecule. The electrons transported by system 4, system 6, and system 7 would be stabilized against the environment. In addition, it can be seen from their plots of frontier MOs that there exist the conjugated delocalized π-electron systems in these derivatives and the involvement of electron withdrawing groups will increase their conjugated properties so that the absorption wavelengths are red-shifted. The system 4-system 7 are showing the prominent red-shift of 33,59,28 nm, and 11 nm, respectively compared to system 1.
机译:密度泛函理论(DPT)非常适合探索共轭π电子系统的性质。我们报告了使用具有B3LYP功能和6-31G〜(**)基集的DFT方法,对新设计的基于恶二唑的低聚物进行了基态几何优化。此外,还讨论了TD-B3LYP能级的相关吸收光谱。系统3-系统8的LUMO能量小于母体分子(系统1),这表明它们比母体分子是更好的电子传输材料。由系统4,系统6和系统7传输的电子将相对于环境稳定。另外,从它们的前沿MO的图可以看出,在这些衍生物中存在共轭离域的π电子系统,并且吸电子基团的参与将增加其共轭性质,从而吸收波长红移。与系统1相比,系统4-系统7分别显示了33、59、28 nm和11 nm的显着红移。

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