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The optoelectronic properties of organic materials based on triphenylamine that are relevant to organic solar photovoltaic cells

机译:基于三苯胺的有机材料的有机材料的光电性质,其与有机太阳能光伏电池相关

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摘要

In this paper, six symmetrical compounds with a donor-acceptor-donor (D-A-D) structure based on triphenylamine as a core and bridged with various spacer fragments with electron-acceptor character, such as quinoxaline, phenazine, benzo[g] quinoxaline, benzo[b] phenazine, thieno[3,4-b] pyrazine and thieno[3,4-b] quinoxaline, have been studied theoretically using two quantum methods, DFT and TD-DFT, together by considering their use in organic BHJ solar cells as potential donors of electron. Intramolecular charge transfer (ICT) interactions have been found for all of the compounds due to the electron withdrawing properties caused by the two imine nitrogen atoms in the pyrazine and the electron-donating properties of the other two amine nitrogen atoms in the two triphenylamines that compose the bridge. The ICT interactions are strengthened when the benzene or thiophene ring are fused on the pyrazine acceptor unit, which leads to a bathochromic shift of the ICT band. Moreover, our quantum calculations show that thiophene is a more appropriate ring than the benzene ring for enlarging the ICT interactions and expanding the absorption spectrum. We remark also that when a thiophene ring is fused on the quinoxaline unit in the D6 compound, a significant shift towards the near-infrared is realized, and it exhibits a maximum absorption wavelength at 690 nm compared to the other studied compounds with a threshold that is over 800 nm. This is attributed to the enhanced charge density on the acceptor spacer and narrow band gap of this compound, as revealed by our theoretical calculations. Finally, these results show that extending the conjugation of a compound based on pyrazine as an acceptor in a D-A-D structured compound can be realized by incorporating the thiophene unit in the bridge and then strengthening the ICT interactions.
机译:本文在本文中,具有基于三苯胺的供体 - 受体 - 供体(爸爸)结构的六种对称化合物,作为芯,桥接着具有电子受体特征的各种间隔片段,例如喹喔啉,苯吡啶,苯并[g]喹喔啉,苯并[ b]通过考虑其在有机BHJ太阳能电池中使用,从理论上使用两个量子方法,DFT和TD-DFT学习苯吡啶,噻吩并[3,4-B]吡嗪和噻吩[3,4-B]喹喔啉电子的潜在供体。由于由吡嗪中的两个亚胺氮原子引起的电子抽出性能和另外两个胺氮原子中的两种胺氮原子中的电子提供性能,所以已经发现了对分子内的电荷转移(ICT)相互作用。桥梁。当苯或噻吩环融合在吡嗪受体单元上时,加强了ICT相互作用,这导致ICT频段的碱基转移。此外,我们的量子计算表明,噻吩是比苯环更合适的环,用于扩大ICT相互作用并扩大吸收光谱。备注,当噻吩环在D6化合物中的喹喔啉单元上融合时,实现了近红外线的显着变化,与具有阈值的其他研究的化合物相比,它表现出690nm的最大吸收波长超过800纳米。这归因于受理界面的增强电荷密度和该化合物的窄带隙,如我们的理论计算所透露。最后,这些结果表明,通过在桥中掺入噻吩单元然后强化ICT相互作用,可以实现基于吡嗪作为D-A-D结构化合物中的受体的化合物作为受体的缀合。

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  • 来源
    《New Journal of Chemistry》 |2017年第22期|共11页
  • 作者单位

    Univ Sidi Mohamed Ben Abdallah Fac Sci Dhar El Mahraz ECIM LIMME Fes Morocco;

    Univ Sidi Mohamed Ben Abdallah Fac Sci Dhar El Mahraz ECIM LIMME Fes Morocco;

    Univ Sidi Mohamed Ben Abdallah Fac Sci Dhar El Mahraz ECIM LIMME Fes Morocco;

    Univ Sidi Mohamed Ben Abdallah Fac Sci Dhar El Mahraz ECIM LIMME Fes Morocco;

    Univ Sidi Mohamed Ben Abdallah Fac Sci Dhar El Mahraz ECIM LIMME Fes Morocco;

    Moulay Ismail Univ Fac Sci &

    Tech Errachidia URMM UCTA Meknes Morocco;

    Univ Moulay Ismail ESTM LASMAR Meknes Morocco;

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  • 正文语种 eng
  • 中图分类 化学;
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