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The role of relativity and dispersion controlled inter-chain interaction on the band gap of thiophene, selenophene, and tellurophene oligomers

机译:相对论和分散控制链间相互作用对噻吩,硒烯和碲二烯低聚物的带隙的作用

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Ab initio relativistic density functional theoretical calculations have been carried out on -conjugated oligomers of increasing length with S, Se, and Te as heteroatoms. The band gap of the corresponding polymers has been obtained by plotting lowest unoccupied molecular orbital (LUMO)-highest occupied molecular orbital (HOMO)gap against the reciprocal of the number of monomer units (1N) and extrapolating the curve to 1N 0. With B3LYP functional, we predict that role of relativistic correction terms is not very significant in the determination of final band gap of thiophene, selenophene, and tellurophene polymer. The origin of this observation is provided through the density of states (DOS) analysis which manifests that DOS contribution across the Fermi level of these polymers is mostly governed by C atoms and as a consequence relativistic correction terms due to heavy heteroatom remain insignificant to the band gap modification. We also inspected the role of inter-chain interaction in determining the net LUMO-HOMO gap of -stacked double chain oligomers of increasing length. We have found that due to the exciton splitting in the stacked configurations, the LUMO-HOMO gap decreases steadily. Furthermore, we have noticed that dispersion force has important role in the reduction of the LUMO-HOMO gap of the oligomers studied.
机译:从头开始相对论密度泛函理论计算就以S,Se和Te为杂原子的,长度不断增加的共轭低聚物进行了。通过绘制最低未占据分子轨道(LUMO)-最高占据分子轨道(HOMO)间隙对单体单元数目(1N)的倒数并将曲线外推至1N 0可获得相应的聚合物的带隙。使用B3LYP在功能上,我们预测相对论校正项的作用在确定噻吩,硒烯和碲二烯聚合物的最终带隙方面不是很重要。该观察的起源是通过状态密度(DOS)分析提供的,该分析表明,在这些聚合物的费米能级上DOS的贡献主要受C原子支配,因此,由于重杂原子导致的相对论性校正项对该谱带无关紧要。缺口修饰。我们还检查了链间相互作用在确定长度增加的堆积双链低聚物的净LUMO-HOMO缺口中的作用。我们发现,由于激子在堆叠构型中分裂,LUMO-HOMO间隙逐渐减小。此外,我们已经注意到,分散力在降低所研究的低聚物的LUMO-HOMO缺口方面具有重要作用。

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