首页> 外文会议>International Conference of Computational Methods in Sciences and Engineering 2007(ICCMSE 2007); 20070925-30; Corfu(GR) >Comparative Theoretical Study of Poly 3-(4-Octylphenyl)thiophenes and Poly3-(4-octylphenoxy)thiophenes as Promising Photovoltaic Cells Materials
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Comparative Theoretical Study of Poly 3-(4-Octylphenyl)thiophenes and Poly3-(4-octylphenoxy)thiophenes as Promising Photovoltaic Cells Materials

机译:聚3-(4-辛基苯基)噻吩和聚3-(4-辛基苯氧基)噻吩作为有前景的光伏电池材料的比较理论研究

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摘要

The geometric and electronic structure of [3-(4-Octylphenyl)]Thiophenes (POPT) and [3-(4-octylphenoxy)thiophenes] (POPOT) oligomers, ranging in size up to the octamer (240 atoms), have been calculated with density functional theory (B3LYP/6-31G*). The knowledge of the geometries for these polymers is of utmost importance in order to understand their optical properties in different phase (solution and condensed phase) . The calculations indicate that, in opposition to the first polymer where the introduction of the pendant phenyl disturb the planarity for the backbone of the conjugated segment, the second polymer has a nice organisation where the conjugated chain still planar even the presence of octylphenyl groups. The optical spectra are calculated with TDDFT and Zindo approaches on the basis of the geometries provided by DFT, and compared to experimental data.
机译:计算了[3-(4-辛基苯基)]噻吩(POPT)和[3-(4-辛基苯氧基)噻吩](POPOT)低聚物的几何和电子结构,其大小范围高达八聚体(240个原子)密度泛函理论(B3LYP / 6-31G *)。为了理解它们在不同相(溶液相和缩合相)中的光学性质,对于这些聚合物的几何形状的知识至关重要。该计算表明,与第一聚合物不同的是,侧基苯基的引入干扰了共轭链段主链的平面性,而第二聚合物具有良好的组织,即使存在辛基苯基,共轭链仍然是平面的。根据DFT提供的几何形状,使用TDDFT和Zindo方法计算光谱,并与实验数据进行比较。

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