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Effect of fluorination and symmetry on the properties of polymeric photovoltaic materials based on an asymmetric building block

机译:氟化与对称性对基于非对称构建块的聚合物光伏材料性能的影响

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摘要

Conjugated polymers based on an asymmetric dithieno[3,2-b: 2',3'-d] pyran (DTPa) donor and benzothiadiazole (BT), mono-fluorinated benzothiadiazole (fBT) or di-fluorinated benzothiadiazole (ffBT) acceptors were designed and synthesized. The introduction of fluorine substituents in the BT unit could not only enhance the electronegativity of the acceptors, but also change the symmetry of the BT derivatives, and thus affect the optical, electrochemical, and optoelectronic performance of the final polymers. With the increase of fluorine atoms in the BT unit, the peaks of the absorption spectra for these three polymers hypsochromic shift gradually, combined with the decrease of the HOMO energy levels. The asymmetric structure of fBT results in more complex multichromophore systems and consequently shows a broader absorption FWHM (full-width-at-half-maximum) of 229 nm in chloroform, as well as low absorption intensity and charge carrier mobility for polymer PDTPa-fBT. Finally, polymer solar cells based on these polymers demonstrate power conversion efficiency varying from 4.01% for PDTPa-BT to 3.70% for PDTPa-fBT and to 5.26% for PDTPa-ffBT. These results indicate that the symmetry of both electron-donating and electron-accepting building blocks in conjugated polymers could evidently influence the optical and photovoltaic properties, which might pave the way for the further development of novel photovoltaic polymers based on asymmetric building blocks.
机译:基于不对称二噻吩并共轭聚合物并[3,2-B:2' ,3'-d]吡喃(DTPA)供体和苯并噻二唑(BT),单 - 苯并噻二唑氟化(FBT)或二氟化苯并噻二唑(ffBT)受体是设计并合成。在BT单元引入氟取代基,不仅可以提高受体的电负性,而且还改变了BT衍生物的对称性,从而影响最终的聚合物的光学,电化学,和光电性能。用氟原子在BT单元的增加,吸收光谱的这些三种聚合物的峰蓝移逐渐与HOMO能级的降低相结合。 FBT导致更复杂的multichromophore系统的非对称结构,因而示出了更广泛的吸收FWHM的氯仿229纳米,(全宽在半最大值)以及低的吸收强度和电荷载体迁移率聚合物PDTPa-FBT 。最后,基于这些聚合物的聚合物太阳能电池表明功率转换效率从PDTPa-BT 4.01%变化到用于PDTPa-FBT 3.70%和为PDTPa-ffBT 5.26%。这些结果表明,对称性两者供电子和受电子构建在共轭聚合物嵌段可明显影响光学和光电特性,这可能会铺路基于不对称积木新颖光伏聚合物的进一步发展。

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  • 来源
    《RSC Advances》 |2016年第93期|共10页
  • 作者单位

    Natl Ctr Nanosci &

    Technol CAS Ctr Excellence Nanosci CAS Key Lab Nanosyst &

    Hierarch Fabricat Beijing 100190 Peoples R China;

    Natl Ctr Nanosci &

    Technol CAS Ctr Excellence Nanosci CAS Key Lab Nanosyst &

    Hierarch Fabricat Beijing 100190 Peoples R China;

    Natl Ctr Nanosci &

    Technol CAS Ctr Excellence Nanosci CAS Key Lab Nanosyst &

    Hierarch Fabricat Beijing 100190 Peoples R China;

    Natl Ctr Nanosci &

    Technol CAS Ctr Excellence Nanosci CAS Key Lab Nanosyst &

    Hierarch Fabricat Beijing 100190 Peoples R China;

    Chinese Acad Sci Beijing Natl Lab Mol Sci Inst Chem State Key Lab Polymer Phys &

    Chem Beijing 100190 Peoples R China;

    Natl Ctr Nanosci &

    Technol CAS Ctr Excellence Nanosci CAS Key Lab Nanosyst &

    Hierarch Fabricat Beijing 100190 Peoples R China;

    Natl Ctr Nanosci &

    Technol CAS Ctr Excellence Nanosci CAS Key Lab Nanosyst &

    Hierarch Fabricat Beijing 100190 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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