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首页> 外文期刊>ACS applied materials & interfaces >Effect of Backbone Sequence of a Naphthalene Diimide-Based Copolymer on Performance in n-Type Organic Thin-Film Transistors
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Effect of Backbone Sequence of a Naphthalene Diimide-Based Copolymer on Performance in n-Type Organic Thin-Film Transistors

机译:萘二酰亚胺基共聚物骨干序列对n型有机薄膜晶体管性能的影响

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We report two newly synthesized naphthalene diimide (NDI)-based conjugated polymers, poly[(E)-2,7-bis(2-decyltetradecyl)benzo[lmn][3,8]-phenanthroline-1,3,6,8(2H,7H)-tetraone-vinylene-thiophene-vinylene] (PNDI-VTV) and poly[(E)-2,7-bis(2-decyltetradecyl)benzo[lmn][3,8]phenanthroline-1,3,6,8(2H,7H)-tetraone-vinylene-selenophene-vinylene] (PNDI-VSV) with different donor units as electron-transporting organic semiconductors for organic field-effect transistors (OFETs). Furthermore, we study the effect of vinylene position on electron transport in the NDI polymers by using two similar polymers but with thiophene-vinylene-thiophene (PNDI-TVT) instead of vinylene-thiophene-vinylene or selenophene-vinylene-selenophene (PNDI-SVS) instead of vinyleneselenophene-vinylene. By incorporating vinylene between thiophene (or selenophene) units, the resulting NDI-based polymers PNDI-VTV and PNDI-VSV show larger backbone planarity than PNDI-TVT and PNDI-SVS. The polymers with a shorter acceptor monomer unit (PNDI-VTV and PNDI-VSV) show a strong face-on orientation, whereas those with a longer monomer unit (PNDI-TVT and SVS) exhibit a mixed face-on and edge-on orientation by two-dimensional grazing incidence X-ray diffraction. Optimized PNDI-VTV and PNDI-VSV OFETs exhibit electron mobilities of 0.043 and 0.7 cm(2)/(V.s), which is quite lower than those of PNDI-TVT and PNDI-SVS. In addition, the activation energies for electron transport of PNDI-VTV and PNDI-VSV were larger than those of PNDI-TVT and PNDI-SVS. Overall, this research provides the insight that the molecular alignment on the substrate can be controlled by the sequence of rigid acceptor monomer molecules for improving the electron transport of NDI polymers.
机译:我们报告了两种新合成的萘二酰亚胺(NDI)的共轭聚合物,聚[(e)-2,7-双(2-癸基四缩醛)苯并[LMN] [3,8] - 苯蒽-1,3,6,8 (2H,7H) - 乙烯基 - 噻吩 - 乙烯基](PNDI-VTV)和聚[(e)-2,7-双(2-癸基四缩醛)苯并[LMN] [3,8]菲利啉-1,3 ,6,8(2H,7H) - 乙烯基 - 硒蛋白 - 乙烯基](PNDI-VSV)具有不同的供体单元,作为用于有机场效应晶体管(OFETS)的电子传输有机半导体。此外,我们研究通过使用两种类似的聚合物,但用噻吩 - 乙烯基 - 噻吩(PNDI-TVT)代替亚乙烯烯 - 乙烯基或硒 - 乙烯基 - 硒烯烯(PNDI-SVs )代替乙烯基苯乙烯 - 乙烯基。通过在噻吩(或硒吩)单元之间掺入乙烯基,得到的基于NDI的聚合物PNDI-VTV和PNDI-VSV显示比PNDI-TVT和PNDI-SVs更大的骨干平面。具有较短的受体单体单元(PNDI-VTV和PNDI-VSV)的聚合物显示出强烈的面对方向,而单体单元(PNDI-TVT和SVS)的那些具有混合的面部和边缘方向。通过二维放牧发病率X射线衍射。优化的PNDI-VTV和PNDI-VSV,表现出0.043和0.7cm(2)/(5s)的电子迁移率,其非常低于PNDI-TVT和PNDI-SVS。此外,PNDI-VTV和PNDI-VSV的电子传输的激活能量大于PNDI-TVT和PNDI-SVS的激活能量。总体而言,该研究提供了识别,即可以通过用于改善NDI聚合物的电子传输的刚性受体单体分子的序列来控制基材上的分子取向。

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