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Photophysical Thermal and Structural Properties of Thiophene and Benzodithiophene-Based Copolymers Synthesized by Direct Arylation Polycondensation Method

机译:直接芳基化缩聚法合成的噻吩和苯二苯甲烷基共聚物的光物理热和结构性能

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摘要

Three low-band-gap copolymers based on isoindigo acceptor units were designed and successfully synthesized by direct arylation polycondensation method. Two of them were benzodithiophene (BDT)-isoindigo copolymers (PBDTI-OD and PBDTI-DT) with 2-octlydodecyl (OD) and 2-decyltetradecyl (DT) substituted isoindigo units, respectively. Thiophene donor and DT-substituted isoindigo acceptor units were copolymerized to synthesize PTI-DT. The copolymers have a broad absorption range that extends to over 760 nm with a band gap ≈1.5 eV. The photophysical property studies showed that the BDT-based copolymers have non-polar ground states. Their emission exhibited the population of the intramolecular charge transfer (ICT) state in polar solvents and tightly bound excitonic state in non-polar solvents due to self-aggregation. On the contrary, the emission from the thiophene-based copolymers was only from the tightly bound excitonic state. The thermal decomposition temperature of the copolymers was above 380 °C. The X-ray diffraction pattern of the three copolymers showed a halo due to π−π stacking. A second, sharper peak was observed in the BDT-based copolymer with a longer side chain on the isoindigo unit (PBDTI-DT), and the thiophene-based copolymers with PTI-DT, exhibiting a better structural order.
机译:通过直接芳基化缩聚法设计并成功地设计了基于isoindigo受体单元的三种低带间隙共聚物。其中两种是苯二碳烯(BDT)-Oindigo共聚物(PBDTI-OD和PBDTI-DT),分别具有2-十二烷基(OD)和2-癸基四丁(DT)取代的异吲哚单元。将噻吩供体和DT-取代的异吲哚受体单元共聚合以合成PTI-DT。共聚物具有宽的吸收范围,其延伸到超过760nm,带隙≈1.5eV。光物理研究表明,BDT基共聚物具有非极性地面态。它们的排放表现出极性溶剂中的分子内电荷转移(ICT)状态的群体,并且由于自聚集而在非极性溶剂中紧密结合的激发态。相反,噻吩基共聚物的发射仅来自紧密结合的激发态。共聚物的热分解温度高于380℃。三种共聚物的X射线衍射图案显示由于π-π堆叠引起的卤素。在基于BDT的共聚物中观察到第二次,在异吲哚单元(PBDTI-DT)上的较长侧链和具有PTI-DT的基于噻吩基共聚物的基于BDT的共聚物,表现出更好的结构顺序。

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