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首页> 外文期刊>New Journal of Chemistry >Structural dependence of the optical properties of narrow band gap thiophene-thiadiazoloquinoxaline derivatives and their application in organic photovoltaic cells
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Structural dependence of the optical properties of narrow band gap thiophene-thiadiazoloquinoxaline derivatives and their application in organic photovoltaic cells

机译:窄带间隙噻吩 - 噻二唑喹喔啉喹啉衍生物的结构依赖性及其在有机光伏细胞中的应用

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摘要

Two new molecules, TQT1 and TQT2, and a polymer, PTQT, with a core based on [1,2,5]thiadiazolo[3,4-g]quinoxaline (TQ) with oligoether-substituted phenyl groups as acceptor and thiophene (T) or bithiophene (T2) as donor, were synthesised, characterised, and used in photovoltaic devices. An analogous polymer, PQT, with quinoxaline units (Q) replacing TQ was also synthesised for comparison purposes. The optical band gap decreases in the order: PQT (1.83 eV), TQT1 (1.68 eV), TQT2 (1.31 eV), PTQT (0.78 eV), this being one of the smallest optical band gaps obtained for conjugated polymers. Density functional theory calculations along with solvatochromic studies demonstrated that in TQT1 the conjugation extension brought about by the thiophene rings affects mainly the HOMO orbital, leaving the LUMO localized in the TQ unit. In consequence, HOMO-LUMO excitations have intramolecular charge transfer (ICT) character from the thiophene ends to the TQ core and the addition of extra thiophene units (TQT2) induces a decrease in the optical gap. The comparison with the polymer PTQT further elucidates on the role of delocalization extension to the observed shift of the lower energy transitions to the near infrared (NIR) spectral range. All the materials were used as electron-donors in solution-processed bulk heterojunction solar cells (BHJ-OSCs) with PCBM as acceptor and TQT1 was also used as electron-acceptor upon combination with the polymer PTB7, thereby revealing its ambipolar behavior. The spectral response of the cells incorporating the materials with the lowest band gaps extended beyond the longest wavelength of illumination tested (800 nm). The device performances are modest but the open-circuit voltages (V-OC) can be well correlated with the optical band gaps.
机译:两种新分子,TQT1和TQT2和聚合物PTQT,具有基于[1,2,5]噻二唑的[3,4 -g]喹喔啉(TQ)作为受体和噻吩(T )或作为供体的二硫乙烯(T2)被合成,其特征和用于光伏器件。对于比较目的,还合成了含有喹喔啉单位(Q)的类似聚合物PQT,用于更换TQ。光带间隙的顺序减少:PQT(1.83eV),TQT1(1.68eV),TQT2(1.31eV),PTQT(0.78eV),这是用于共轭聚合物的最小光带间隙之一。密度函数理论计算随着溶性多变性研究证明,在TQT1中,由噻吩环带来的缀合延伸主要影响Homo轨道,使Lumo在TQ单元中局部局部局部地影响。结果,HOMO-Lumo激发具有从噻吩末端到TQ核心的分子内电荷转移(ICT)特征,并且添加额外的噻吩单元(TQT2)引起光学间隙的降低。与离域扩展的作用,以较低的能量跃迁到近红外(NIR)的光谱范围内所观察到的位移的聚合物PTQT进一步阐明了比较。所有材料用作溶液加工的本体异质结太阳能电池(BHJ-OSC)中的电子供体,PCBM作为受体和TQT1也与聚合物PTB7组合时用作电子 - 受体,从而揭示其amipolar行为。包含具有最低带间隙的电池的电池的光谱响应延伸超过测试的最长波长(800nm)。器件性能是适度的,但开路电压(V-OC)可以与光带间隙良好相关。

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  • 来源
    《New Journal of Chemistry》 |2019年第13期|共12页
  • 作者单位

    Inst Super Tecn Inst Telecomunicacoes Ave Rovisco Pais 1 P-1049001 Lisbon Portugal;

    Inst Super Tecn Inst Telecomunicacoes Ave Rovisco Pais 1 P-1049001 Lisbon Portugal;

    Univ Lisbon CQFM IN Inst Super Tecn Lisbon Portugal;

    Inst Super Tecn Inst Telecomunicacoes Ave Rovisco Pais 1 P-1049001 Lisbon Portugal;

    Univ Lisbon Inst Super Tecn Ctr Quim Estrutural Ave Rovisco Pais P-1049001 Lisbon Portugal;

    Inst Super Tecn Inst Telecomunicacoes Ave Rovisco Pais 1 P-1049001 Lisbon Portugal;

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  • 正文语种 eng
  • 中图分类 化学;
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