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首页> 外文期刊>Advanced Functional Materials >A-D-A-Type Oligothiophenes for Small Molecule Organic Solar Cells: Extending the π-System by Introduction of Ring-Locked Double Bonds
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A-D-A-Type Oligothiophenes for Small Molecule Organic Solar Cells: Extending the π-System by Introduction of Ring-Locked Double Bonds

机译:用于小分子有机太阳能电池的A-D-A型寡聚噻吩:通过引入环锁双键扩展π系统

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摘要

A series of novel acceptor-donor-acceptor oligothiophenes terminally substituted with the 1-(1,1-dicyanomethylene)-cydohex-2-ene (DCC) acceptor has been synthesized. Structural, thermal, optoelectronic, and photovoltaic properties of the π-extended DCCnTs (n = 1-4) are characterized and contrasted to the trends found for the series of parent dicyanovinyl (DCV)-substituted oligothiophenes DCVnT. The optoelectronic properties reveal the influence of the additional exocyclic, sterically fixed double bonds in trans-configuration in the novel DCCnT derivatives. A close correspondence for derivatives with equal number of double bonds, that is, DCCnTs and DCV(n + 1)Ts, is identified. Despite having the same energy gap, the energy levels of the frontier orbitals, HOMO and LUMO, for the DCC-derivatives are raised and more destabilized due to the aromatization energy of a thiophene ring versus two exocyclic double bonds indicating improved donor and reduced acceptor strength. DCC-terthiophenes give good photovoltaic performance as donor materials in vacuum-processed solar cells (power conversion efficiencies ≤ 4.4%) clearly outperforming all comparable DCV4T derivatives.
机译:合成了一系列新型的1-(1,1-二氰基亚甲基)-环己-2-烯(DCC)受体末端取代的受体-受体-寡聚噻吩。表征了π扩展DCCnT(n = 1-4)的结构,热,光电和光伏性质,并将其与一系列母体双氰基乙烯基(DCV)取代的低聚噻吩DCVnT的趋势进行了对比。光电特性揭示了新型DCCnT衍生物中反式构型中额外的环外,空间固定的双键的影响。确定具有相等数量的双键的导数(即DCCnTs和DCV(n +1)Ts)的紧密对应关系。尽管具有相同的能隙,但是由于噻吩环相对于两个外环双键的芳构化能,DCC衍生物的前沿轨道的能级HOMO和LUMO的能级提高并且更加不稳定,这表明供体得到改善,受体强度降低。 DCC-对噻吩在真空处理的太阳能电池中作为施主材料具有良好的光伏性能(功率转换效率≤4.4%)明显优于所有可比的DCV4T衍生物。

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  • 来源
    《Advanced Functional Materials》 |2015年第12期|1845-1856|共12页
  • 作者单位

    Institute of Organic Chemistry Ⅱ and Advanced Materials University of Ulm Albert-Einstein-Allee 11, 89081 Ulm Germany,Heliatek,GmbH, Sedanstrasse 14, 89077 Ulm, Germany;

    Institute of Organic Chemistry Ⅱ and Advanced Materials University of Ulm Albert-Einstein-Allee 11, 89081 Ulm Germany;

    Heliatek GmbH Treidlerstrasse 3, 01139 Dresden, Germany;

    Heliatek GmbH Treidlerstrasse 3, 01139 Dresden, Germany;

    Institute of Organic Chemistry Ⅱ and Advanced Materials University of Ulm Albert-Einstein-Allee 11, 89081 Ulm Germany;

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